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 Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Use PV=nRT. Given n=1.34 mol, T=258 K, V=24.43 L... | P ≈ 1.161 atm. | {
"id": "WUA_CHEM_25K_016301",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tags"... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=29 kJ/mol, ΔS=-2... | ΔG = 193.38 kJ/mol. | {
"id": "WUA_CHEM_25K_016302",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
... | [
{
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"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 7.28e-07... | pH ≈ 6.14. | {
"id": "WUA_CHEM_25K_016303",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Use PV=nRT. Given n=4.12 mol, T=344 K, V=37.24 L... | P ≈ 3.123 atm. | {
"id": "WUA_CHEM_25K_016304",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tag... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Use PV=nRT. Given n=3.19 mol, T=298 K, V=39.85 L... | P ≈ 1.957 atm. | {
"id": "WUA_CHEM_25K_016305",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tag... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=2.032 mol and ... | M = 0.813 mol/L. | {
"id": "WUA_CHEM_25K_016306",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tags... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=0.398 mol and ... | M = 1.502 mol/L. | {
"id": "WUA_CHEM_25K_016307",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 6.52e-10... | pH ≈ 9.19. | {
"id": "WUA_CHEM_25K_016308",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 1.55e-10... | pH ≈ 9.81. | {
"id": "WUA_CHEM_25K_016309",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tags... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=2.75 M, V1=174... | M2 = 0.577 M. | {
"id": "WUA_CHEM_25K_016310",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-96 kJ/mol, ΔS=1... | ΔG = -193.56 kJ/mol. | {
"id": "WUA_CHEM_25K_016311",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=0.239 mol and ... | M = 0.129 mol/L. | {
"id": "WUA_CHEM_25K_016312",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "advanced",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=0.689 mol and ... | M = 0.688 mol/L. | {
"id": "WUA_CHEM_25K_016313",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=1.236 mol and ... | M = 1.378 mol/L. | {
"id": "WUA_CHEM_25K_016314",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=29.99 g (M=32.0 g/... | Limiting reagent: A. Moles of C formed = 0.9372 mol. | {
"id": "WUA_CHEM_25K_016315",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
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"style_contract": "concise_formal"
} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=43.49 g (M=58.44 g... | Limiting reagent: B. Moles of C formed = 0.7141 mol. | {
"id": "WUA_CHEM_25K_016316",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=54 kJ/mol, ΔS=14... | ΔG = -35.32 kJ/mol. | {
"id": "WUA_CHEM_25K_016317",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
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} |
{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=0.892 mol and ... | M = 1.407 mol/L. | {
"id": "WUA_CHEM_25K_016318",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Use PV=nRT. Given n=3.89 mol, T=278 K, V=16.13 L... | P ≈ 5.501 atm. | {
"id": "WUA_CHEM_25K_016319",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tags"... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=33.52 g (M=58.44 g... | Limiting reagent: A. Moles of C formed = 0.5736 mol. | {
"id": "WUA_CHEM_25K_016320",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.95 M, V1=30 ... | M2 = 0.134 M. | {
"id": "WUA_CHEM_25K_016321",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute molarity M = n/V. Given n=1.514 mol and ... | M = 0.629 mol/L. | {
"id": "WUA_CHEM_25K_016322",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"tags... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
"style_contract": "concise_formal"
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.66 M, V1=177... | M2 = 0.260 M. | {
"id": "WUA_CHEM_25K_016323",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "archon",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"ta... | [
{
"source_title": "Self-contained in prompt",
"source_url": "",
"evidence_type": "self_contained",
"accessed_at_utc": "2026-01-04T05:02:58"
}
] | {
"max_tokens_hint": 220,
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{
"messages": [
{
"role": "system",
"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 1.08e-07... | pH ≈ 6.97. | {
"id": "WUA_CHEM_25K_016324",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
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"content": "Compute molarity M = n/V. Given n=0.39 mol and V... | M = 0.837 mol/L. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=242 kJ/mol, ΔS=1... | ΔG = 112.97 kJ/mol. | {
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"content": "Use PV=nRT. Given n=2.35 mol, T=274 K, V=12.83 L... | P ≈ 4.118 atm. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-155 kJ/mol, ΔS=... | ΔG = -328.39 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-49 kJ/mol, ΔS=9... | ΔG = -73.38 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=139 kJ/mol, ΔS=-... | ΔG = 209.13 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=172 kJ/mol, ΔS=2... | ΔG = 7.74 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=166 kJ/mol, ΔS=6... | ΔG = 162.71 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.47 M, V1=83 ... | M2 = 0.807 M. | {
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"content": "Reaction: A + 2B → C. mass(A)=81.5 g (M=32.0 g/m... | Limiting reagent: B. Moles of C formed = 1.7168 mol. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=0.53 M, V1=71 ... | M2 = 0.053 M. | {
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"task": "quantitative_reasoning",
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"content": "Reaction: A + 2B → C. mass(A)=69.45 g (M=98.08 g... | Limiting reagent: A. Moles of C formed = 0.7081 mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=191 kJ/mol, ΔS=-... | ΔG = 286.74 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=150 kJ/mol, ΔS=2... | ΔG = -55.02 kJ/mol. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=0.81 M, V1=31 ... | M2 = 0.026 M. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"content": "Compute pH = -log10([H+]). Given [H+] = 4.06e-11... | pH ≈ 10.39. | {
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"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
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"content": "Reaction: A + 2B → C. mass(A)=18.3 g (M=18.02 g/... | Limiting reagent: A. Moles of C formed = 1.0155 mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
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"content": "Compute pH = -log10([H+]). Given [H+] = 3.46e-12... | pH ≈ 11.46. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
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"content": "Compute pH = -log10([H+]). Given [H+] = 0.00156 ... | pH ≈ 2.81. | {
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"content": "Use PV=nRT. Given n=3.27 mol, T=350 K, V=49.43 L... | P ≈ 1.900 atm. | {
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"domain": "master_scholars_academics",
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"task": "quantitative_reasoning",
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"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 1.49e-13... | pH ≈ 12.83. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=187 kJ/mol, ΔS=-... | ΔG = 275.40 kJ/mol. | {
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"role": "user",
"content": "Compute molarity M = n/V. Given n=1.55 mol and V... | M = 4.572 mol/L. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-176 kJ/mol, ΔS=... | ΔG = -149.13 kJ/mol. | {
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"content": "Use PV=nRT. Given n=0.33 mol, T=306 K, V=48.05 L... | P ≈ 0.172 atm. | {
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"content": "Compute pH = -log10([H+]). Given [H+] = 3.34e-13... | pH ≈ 12.48. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=1.32 M, V1=92 ... | M2 = 0.313 M. | {
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"content": "Compute molarity M = n/V. Given n=0.858 mol and ... | M = 0.364 mol/L. | {
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"content": "Use PV=nRT. Given n=1.2 mol, T=294 K, V=23.52 L,... | P ≈ 1.231 atm. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=22 kJ/mol, ΔS=-2... | ΔG = 130.11 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
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"content": "Compute molarity M = n/V. Given n=1.305 mol and ... | M = 2.979 mol/L. | {
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"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=1.63 M, V1=41 ... | M2 = 0.130 M. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"content": "Compute pH = -log10([H+]). Given [H+] = 6.15e-07... | pH ≈ 6.21. | {
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"content": "Reaction: A + 2B → C. mass(A)=39.46 g (M=32.0 g/... | Limiting reagent: B. Moles of C formed = 0.7414 mol. | {
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"content": "Compute molarity M = n/V. Given n=2.177 mol and ... | M = 19.791 mol/L. | {
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"task": "quantitative_reasoning",
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.84 M, V1=235... | M2 = 1.648 M. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"content": "Use PV=nRT. Given n=0.58 mol, T=330 K, V=5.23 L,... | P ≈ 3.003 atm. | {
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"task": "quantitative_reasoning",
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-195 kJ/mol, ΔS=... | ΔG = -121.48 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-101 kJ/mol, ΔS=... | ΔG = -136.19 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-20 kJ/mol, ΔS=6... | ΔG = -56.60 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 2.45e-08... | pH ≈ 7.61. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
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{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=41.96 g (M=98.08 g... | Limiting reagent: A. Moles of C formed = 0.4278 mol. | {
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"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
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"content": "Compute molarity M = n/V. Given n=0.293 mol and ... | M = 0.102 mol/L. | {
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{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=2.58 M, V1=51 ... | M2 = 0.353 M. | {
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"domain": "master_scholars_academics",
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{
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"content": "Compute molarity M = n/V. Given n=0.463 mol and ... | M = 0.670 mol/L. | {
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{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.68 M, V1=134... | M2 = 0.165 M. | {
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{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.72 M, V1=118... | M2 = 0.123 M. | {
"id": "WUA_CHEM_25K_016376",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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{
"role": "user",
"content": "Use PV=nRT. Given n=2.29 mol, T=270 K, V=20.06 L... | P ≈ 2.529 atm. | {
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"task": "quantitative_reasoning",
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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{
"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=48 kJ/mol, ΔS=14... | ΔG = -12.92 kJ/mol. | {
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{
"role": "user",
"content": "Use PV=nRT. Given n=0.67 mol, T=265 K, V=12.99 L... | P ≈ 1.122 atm. | {
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"subdomain": "chemistry_math::gas_laws",
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=2.56 M, V1=200... | M2 = 1.992 M. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.43 M, V1=236... | M2 = 0.106 M. | {
"id": "WUA_CHEM_25K_016381",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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{
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=187 kJ/mol, ΔS=8... | ΔG = 158.92 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
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{
"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-129 kJ/mol, ΔS=... | ΔG = -33.67 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
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{
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"content": "Use PV=nRT. Given n=1.5 mol, T=316 K, V=27.58 L,... | P ≈ 1.410 atm. | {
"id": "WUA_CHEM_25K_016384",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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{
"role": "user",
"content": "Compute molarity M = n/V. Given n=2.06 mol and V... | M = 1.549 mol/L. | {
"id": "WUA_CHEM_25K_016385",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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{
"role": "user",
"content": "Compute molarity M = n/V. Given n=0.306 mol and ... | M = 0.350 mol/L. | {
"id": "WUA_CHEM_25K_016386",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"... | [
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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"content": "Reaction: A + 2B → C. mass(A)=77.1 g (M=32.0 g/m... | Limiting reagent: B. Moles of C formed = 1.1994 mol. | {
"id": "WUA_CHEM_25K_016387",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
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"truth_mode": "self_contained_math",
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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{
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"content": "Compute pH = -log10([H+]). Given [H+] = 1.66e-09... | pH ≈ 8.78. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
"task": "quantitative_reasoning",
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"content": "Reaction: A + 2B → C. mass(A)=97.92 g (M=18.02 g... | Limiting reagent: A. Moles of C formed = 5.4340 mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
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... | [
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=31.12 g (M=98.08 g... | Limiting reagent: A. Moles of C formed = 0.3173 mol. | {
"id": "WUA_CHEM_25K_016390",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
"difficulty": "core",
"truth_mode": "self_contained_math",
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"... | [
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.43 M, V1=102... | M2 = 0.074 M. | {
"id": "WUA_CHEM_25K_016391",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "advanced",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
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"... | [
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{
"role": "user",
"content": "Use PV=nRT. Given n=1.65 mol, T=306 K, V=13.88 L... | P ≈ 2.985 atm. | {
"id": "WUA_CHEM_25K_016392",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
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"truth_mode": "self_contained_math",
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{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=69.46 g (M=98.08 g... | Limiting reagent: A. Moles of C formed = 0.7082 mol. | {
"id": "WUA_CHEM_25K_016393",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
},
{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=74.03 g (M=58.44 g... | Limiting reagent: B. Moles of C formed = 0.2629 mol. | {
"id": "WUA_CHEM_25K_016394",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
"difficulty": "advanced",
"truth_mode": "self_contained_math",
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"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",... | [
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"content": "Compute molarity M = n/V. Given n=1.995 mol and ... | M = 6.832 mol/L. | {
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"content": "Use PV=nRT. Given n=4.58 mol, T=267 K, V=21.87 L... | P ≈ 4.588 atm. | {
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"content": "Use PV=nRT. Given n=3.91 mol, T=341 K, V=20.39 L... | P ≈ 5.366 atm. | {
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"content": "Compute molarity M = n/V. Given n=2.392 mol and ... | M = 2.600 mol/L. | {
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"content": "You are WithinUsAI Master Scholars Chemistry Quantitative Reasoning. Use the formula provided. Show minimal steps and give the final answer with units."
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"role": "user",
"content": "Use PV=nRT. Given n=2.75 mol, T=282 K, V=15.69 L... | P ≈ 4.056 atm. | {
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"content": "Compute pH = -log10([H+]). Given [H+] = 1.7e-08 ... | pH ≈ 7.77. | {
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