prompt
dict
response
stringlengths
10
165
meta
dict
fact_sources
listlengths
1
3
artifacts
dict
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007001", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007002", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: pH is defined as pH = -log10([H+]) where [H+] is in ...
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007003", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007004", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007005", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Atomic number equals the number of neutrons in the n...
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007006", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007007", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007008", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007009", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007010", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007011", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007012", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007013", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007014", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007015", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007016", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007017", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007018", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): In a neutral atom, the number of protons equals the number of electrons." } ] }
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007019", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007020", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007021", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007022", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: pH is defined as pH = -log10([H+]) where [H+] is in ...
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007023", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007024", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007025", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007026", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007027", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007028", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007029", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007030", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Atomic number equals the number of neutrons in the n...
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007031", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007032", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007033", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007034", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007035", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007036", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007037", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007038", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007039", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007040", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007041", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007042", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chem...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007043", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007044", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007045", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Atomic number equals the number of neutrons in the n...
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007046", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007047", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007048", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: pH is defined as pH = -log10([H+]) where [H+] is in ...
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007049", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007050", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007051", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007052", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): In a neutral atom, the number of protons equals the number of electrons." } ] }
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007053", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Atomic number equals the number of neutrons in the n...
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007054", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007055", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007056", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007057", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Atomic number equals the number of neutrons in the n...
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007058", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): In a neutral atom, the number of protons equals the number of electrons." } ] }
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007059", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007060", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): In a neutral atom, the number of protons equals the number of electrons." } ] }
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007061", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007062", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007063", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007064", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007065", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007066", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007067", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007068", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007069", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007070", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007071", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007072", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007073", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007074", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007075", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007076", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007077", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: In a neutral atom, the number of protons equals the ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007078", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007079", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007080", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007081", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007082", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Molarity is moles of solute per liter of solution." ...
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007083", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007084", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007085", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007086", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007087", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: One mole contains approximately 6.022×10^23 entities." } ] }
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007088", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007089", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007090", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: The ideal gas law is PV = nRT." } ] }
TRUE — The ideal gas law is PV = nRT.
{ "id": "WUA_CHEM_25K_007091", "domain": "master_scholars_academics", "subdomain": "chemistry::gas_laws", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemistr...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): In a neutral atom, the number of protons equals the number of electrons." } ] }
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007092", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: pH is defined as pH = -log10([H+]) where [H+] is in mol/L." } ] }
TRUE — pH is defined as pH = -log10([H+]) where [H+] is in mol/L.
{ "id": "WUA_CHEM_25K_007093", "domain": "master_scholars_academics", "subdomain": "chemistry::acid_base", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "chemist...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007094", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): In a neutral atom, the number of protons equals the number of electrons." } ] }
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007095", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: In a neutral atom, the number of protons equals the number of electrons." } ...
TRUE — In a neutral atom, the number of protons equals the number of electrons.
{ "id": "WUA_CHEM_25K_007096", "domain": "master_scholars_academics", "subdomain": "chemistry::atomic_structure", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ ...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007097", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Atomic number equals the number of neutrons in the nucleus." } ] }
FALSE — Atomic number equals the number of protons in the nucleus.
{ "id": "WUA_CHEM_25K_007098", "domain": "master_scholars_academics", "subdomain": "chemistry::periodic_table", "task": "fact_check", "difficulty": "core", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "ch...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: One mole contains approximately 6.022×10^23 entities...
TRUE — One mole contains approximately 6.022×10^23 entities.
{ "id": "WUA_CHEM_25K_007099", "domain": "master_scholars_academics", "subdomain": "chemistry::stoichiometry", "task": "fact_check", "difficulty": "seed", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Chemistry. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Molarity is moles of solute per liter of solution." } ] }
TRUE — Molarity is moles of solute per liter of solution.
{ "id": "WUA_CHEM_25K_007100", "domain": "master_scholars_academics", "subdomain": "chemistry::solutions", "task": "fact_check", "difficulty": "advanced", "truth_mode": "verifiable_fact", "wrapper": "verify_true_false", "created_utc": "2026-01-04T05:02:58", "license": "cc-by-4.0", "tags": [ "che...
[ { "source_title": "OpenStax Chemistry 2e (CC BY 4.0)", "source_url": "https://openstax.org/details/books/chemistry-2e", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "IUPAC Gold Book", "source_url": "https://goldbook.iupac.org/", "evidence...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }