prompt dict | response stringlengths 10 165 | meta dict | fact_sources listlengths 1 3 | artifacts dict |
|---|---|---|---|---|
{
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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": "Use PV=nRT. Given n=0.75 mol, T=258 K, V=3.83 L,... | P ≈ 4.146 atm. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"task": "quantitative_reasoning",
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"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_utc": "2026-01-04T05:02:58",
"license": "cc-by-4.0",
"t... | [
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"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=0.87 M, V1=188... | M2 = 0.174 M. | {
"id": "WUA_CHEM_25K_014202",
"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",
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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=1.37 M, V1=239... | M2 = 0.368 M. | {
"id": "WUA_CHEM_25K_014203",
"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",
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"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=1.385 mol and ... | M = 0.559 mol/L. | {
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"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",
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"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=-185 kJ/mol, ΔS=... | ΔG = -134.70 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
"difficulty": "advanced",
"truth_mode": "self_contained_math",
"wrapper": "minimal_chain",
"created_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)=42.77 g (M=18.02 g... | Limiting reagent: A. Moles of C formed = 2.3735 mol. | {
"id": "WUA_CHEM_25K_014206",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"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",... | [
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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=2.24 M, V1=230... | M2 = 1.435 M. | {
"id": "WUA_CHEM_25K_014207",
"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",
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"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=2.07 mol, T=261 K, V=1.27 L,... | P ≈ 34.908 atm. | {
"id": "WUA_CHEM_25K_014208",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"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",
"t... | [
{
"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)=100.18 g (M=44.01 ... | Limiting reagent: B. Moles of C formed = 0.5004 mol. | {
"id": "WUA_CHEM_25K_014209",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"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"
}
] | {
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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=0.5 M, V1=201 ... | M2 = 0.156 M. | {
"id": "WUA_CHEM_25K_014210",
"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"
}
] | {
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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)=25.81 g (M=32.0 g/... | Limiting reagent: B. Moles of C formed = 0.5203 mol. | {
"id": "WUA_CHEM_25K_014211",
"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",
"... | [
{
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"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=134 kJ/mol, ΔS=1... | ΔG = 39.06 kJ/mol. | {
"id": "WUA_CHEM_25K_014212",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"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"
}
] | {
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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=1.869 mol and ... | M = 1.505 mol/L. | {
"id": "WUA_CHEM_25K_014213",
"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"
}
] | {
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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": "Dilution: M1*V1 = M2*V2. Given M1=1.29 M, V1=87 ... | M2 = 0.115 M. | {
"id": "WUA_CHEM_25K_014214",
"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": "Dilution: M1*V1 = M2*V2. Given M1=1.4 M, V1=66 m... | M2 = 0.451 M. | {
"id": "WUA_CHEM_25K_014215",
"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... | [
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"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=3.0 mol, T=271 K, V=5.69 L, ... | P ≈ 11.724 atm. | {
"id": "WUA_CHEM_25K_014216",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::gas_laws",
"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",
"t... | [
{
"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)=62.38 g (M=58.44 g... | Limiting reagent: B. Moles of C formed = 0.5963 mol. | {
"id": "WUA_CHEM_25K_014217",
"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": "Compute molarity M = n/V. Given n=1.615 mol and ... | M = 0.743 mol/L. | {
"id": "WUA_CHEM_25K_014218",
"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"
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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=4.77 mol, T=306 K, V=6.93 L,... | P ≈ 17.283 atm. | {
"id": "WUA_CHEM_25K_014219",
"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",
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{
"source_title": "Self-contained in prompt",
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"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=2.286 mol and ... | M = 2.671 mol/L. | {
"id": "WUA_CHEM_25K_014220",
"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": "Reaction: A + 2B → C. mass(A)=73.78 g (M=18.02 g... | Limiting reagent: A. Moles of C formed = 4.0943 mol. | {
"id": "WUA_CHEM_25K_014221",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"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"
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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)=78.28 g (M=98.08 g... | Limiting reagent: A. Moles of C formed = 0.7981 mol. | {
"id": "WUA_CHEM_25K_014222",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"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",... | [
{
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"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=0.297 mol and ... | M = 0.132 mol/L. | {
"id": "WUA_CHEM_25K_014223",
"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... | [
{
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"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=1.408 mol and ... | M = 2.440 mol/L. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=0.66 M, V1=168... | M2 = 0.470 M. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.72 M, V1=5 m... | M2 = 0.019 M. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=194 kJ/mol, ΔS=5... | ΔG = 177.60 kJ/mol. | {
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"content": "Use PV=nRT. Given n=2.45 mol, T=315 K, V=14.92 L... | P ≈ 4.244 atm. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-59 kJ/mol, ΔS=-... | ΔG = 84.22 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=169 kJ/mol, ΔS=1... | ΔG = 103.59 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.25 M, V1=143... | M2 = 0.389 M. | {
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"content": "Use PV=nRT. Given n=1.65 mol, T=286 K, V=36.35 L... | P ≈ 1.065 atm. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.11 M, V1=19 ... | M2 = 0.062 M. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=83 kJ/mol, ΔS=12... | ΔG = 77.73 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=55 kJ/mol, ΔS=-8... | ΔG = 76.16 kJ/mol. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.86 M, V1=90 ... | M2 = 0.775 M. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.73 M, V1=159... | M2 = 1.507 M. | {
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"content": "Reaction: A + 2B → C. mass(A)=80.46 g (M=18.02 g... | Limiting reagent: B. Moles of C formed = 2.0753 mol. | {
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"content": "Use PV=nRT. Given n=2.8 mol, T=273 K, V=39.64 L,... | P ≈ 1.582 atm. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=101 kJ/mol, ΔS=2... | ΔG = -41.88 kJ/mol. | {
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"content": "Reaction: A + 2B → C. mass(A)=67.18 g (M=32.0 g/... | Limiting reagent: B. Moles of C formed = 0.4720 mol. | {
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"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=68.63 g (M=58.44 g... | Limiting reagent: B. Moles of C formed = 0.5250 mol. | {
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"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.66 M, V1=81 ... | M2 = 0.256 M. | {
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"subdomain": "chemistry_math::solutions",
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"content": "Compute pH = -log10([H+]). Given [H+] = 8.74e-07... | pH ≈ 6.06. | {
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"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=212 kJ/mol, ΔS=-... | ΔG = 252.04 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
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"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 7.94e-12... | pH ≈ 11.10. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::acid_base",
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"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=28 kJ/mol, ΔS=21... | ΔG = -87.45 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
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"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 0.00233 ... | pH ≈ 2.63. | {
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"domain": "master_scholars_academics",
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"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 0.027 mo... | pH ≈ 1.57. | {
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"domain": "master_scholars_academics",
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"task": "quantitative_reasoning",
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"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=104 kJ/mol, ΔS=2... | ΔG = 15.62 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
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"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=1.85 M, V1=136... | M2 = 0.374 M. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"role": "user",
"content": "Compute pH = -log10([H+]). Given [H+] = 0.0257 m... | pH ≈ 1.59. | {
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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)=27.33 g (M=98.08 g... | Limiting reagent: A. Moles of C formed = 0.2787 mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
"task": "quantitative_reasoning",
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"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=75.77 g (M=44.01 g... | Limiting reagent: A. Moles of C formed = 1.7217 mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::stoichiometry",
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"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=56 kJ/mol, ΔS=21... | ΔG = -19.38 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"task": "quantitative_reasoning",
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"role": "user",
"content": "Compute ΔG = ΔH - TΔS. Given ΔH=43 kJ/mol, ΔS=-2... | ΔG = 179.19 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
"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": "Dilution: M1*V1 = M2*V2. Given M1=1.13 M, V1=22 ... | M2 = 0.051 M. | {
"id": "WUA_CHEM_25K_014267",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
"difficulty": "advanced",
"truth_mode": "self_contained_math",
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"... | [
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{
"role": "user",
"content": "Dilution: M1*V1 = M2*V2. Given M1=0.72 M, V1=208... | M2 = 0.152 M. | {
"id": "WUA_CHEM_25K_014268",
"domain": "master_scholars_academics",
"subdomain": "chemistry_math::solutions",
"task": "quantitative_reasoning",
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"role": "user",
"content": "Compute molarity M = n/V. Given n=0.598 mol and ... | M = 1.281 mol/L. | {
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"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": "Use PV=nRT. Given n=0.93 mol, T=286 K, V=18.79 L... | P ≈ 1.162 atm. | {
"id": "WUA_CHEM_25K_014270",
"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."
},
{
"role": "user",
"content": "Reaction: A + 2B → C. mass(A)=20.51 g (M=58.44 g... | Limiting reagent: A. Moles of C formed = 0.3510 mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-54 kJ/mol, ΔS=-... | ΔG = -45.35 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=52 kJ/mol, ΔS=94... | ΔG = 21.26 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=208 kJ/mol, ΔS=-... | ΔG = 246.91 kJ/mol. | {
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"content": "Use PV=nRT. Given n=1.09 mol, T=278 K, V=5.06 L,... | P ≈ 4.914 atm. | {
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"content": "Dilution: M1*V1 = M2*V2. Given M1=2.4 M, V1=159 ... | M2 = 0.404 M. | {
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"content": "Compute pH = -log10([H+]). Given [H+] = 0.000503... | pH ≈ 3.30. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-87 kJ/mol, ΔS=9... | ΔG = -148.66 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Compute pH = -log10([H+]). Given [H+] = 2.12e-12... | pH ≈ 11.67. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-176 kJ/mol, ΔS=... | ΔG = -188.06 kJ/mol. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-147 kJ/mol, ΔS=... | ΔG = -257.52 kJ/mol. | {
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"subdomain": "chemistry_math::thermodynamics",
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"content": "Compute molarity M = n/V. Given n=1.868 mol and ... | M = 0.736 mol/L. | {
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"content": "Compute ΔG = ΔH - TΔS. Given ΔH=-54 kJ/mol, ΔS=-... | ΔG = -32.75 kJ/mol. | {
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"domain": "master_scholars_academics",
"subdomain": "chemistry_math::thermodynamics",
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"content": "Reaction: A + 2B → C. mass(A)=82.9 g (M=44.01 g/... | Limiting reagent: A. Moles of C formed = 1.8837 mol. | {
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"content": "Compute molarity M = n/V. Given n=0.962 mol and ... | M = 0.371 mol/L. | {
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