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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000201", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000202", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000203", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000204", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000205", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000206", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000207", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000208", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "max_tokens_hint": 220, "style_contract": "concise_formal" }
{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000209", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000210", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000211", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000212", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000213", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000214", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000215", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000216", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000217", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000218", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000219", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000220", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000221", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
[ { "source_title": "DoITPoMS (University of Cambridge) — Materials Education", "source_url": "https://www.doitpoms.ac.uk/", "evidence_type": "standard", "accessed_at_utc": "2026-01-04T05:02:58" }, { "source_title": "NIST (general)", "source_url": "https://www.nist.gov/", "evidence_typ...
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000222", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000223", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000224", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000225", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000226", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000227", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000229", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — FCC stands for face-centered cubic crystal structure.
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FALSE — BCC stands for body-centered cubic.
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TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000232", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000233", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000234", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000235", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000236", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000237", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000238", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — FCC stands for face-centered cubic crystal structure.
{ "id": "WUA_MAT_25K_000239", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000240", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000241", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000242", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000243", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Stress is force divided by area (σ = F/A)." } ] }
TRUE — Stress is force divided by area (σ = F/A).
{ "id": "WUA_MAT_25K_000244", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
{ "id": "WUA_MAT_25K_000245", "domain": "master_scholars_academics", "subdomain": "materials::mechanical", "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": [ "materials", "engineering", "academics", "verification" ] }
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
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FALSE — BCC stands for body-centered cubic.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
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TRUE — FCC stands for face-centered cubic crystal structure.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
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TRUE — Fick's first law: J = -D dC/dx.
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TRUE — Stress is force divided by area (σ = F/A).
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TRUE — Stress is force divided by area (σ = F/A).
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TRUE — Fick's first law: J = -D dC/dx.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
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FALSE — BCC stands for body-centered cubic.
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TRUE — Fick's first law: J = -D dC/dx.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Strain is dimensionless and represents relative deformation (ε = ΔL/L)." } ] }
TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
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TRUE — Fick's first law: J = -D dC/dx.
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TRUE — Stress is force divided by area (σ = F/A).
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TRUE — Fick's first law: J = -D dC/dx.
{ "id": "WUA_MAT_25K_000262", "domain": "master_scholars_academics", "subdomain": "materials::diffusion", "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": [ "materials", "engineering", "academics", "verification" ] }
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FALSE — BCC stands for body-centered cubic.
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TRUE — Stress is force divided by area (σ = F/A).
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): Fick's first law: J = -D dC/dx." } ] }
TRUE — Fick's first law: J = -D dC/dx.
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FALSE — BCC stands for body-centered cubic.
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TRUE — Stress is force divided by area (σ = F/A).
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
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FALSE — BCC stands for body-centered cubic.
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
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TRUE — Stress is force divided by area (σ = F/A).
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FALSE — BCC stands for body-centered cubic.
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TRUE — Stress is force divided by area (σ = F/A).
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "True or False (academics): FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
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TRUE — Stress is force divided by area (σ = F/A).
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TRUE — Fick's first law: J = -D dC/dx.
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FALSE — BCC stands for body-centered cubic.
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FALSE — BCC stands for body-centered cubic.
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TRUE — Fick's first law: J = -D dC/dx.
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TRUE — Stress is force divided by area (σ = F/A).
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FALSE — BCC stands for body-centered cubic.
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TRUE — Fick's first law: J = -D dC/dx.
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
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TRUE — Fick's first law: J = -D dC/dx.
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TRUE — FCC stands for face-centered cubic crystal structure.
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TRUE — Strain is dimensionless and represents relative deformation (ε = ΔL/L).
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TRUE — Stress is force divided by area (σ = F/A).
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Academic fact-check: TRUE/FALSE then corrected statement if needed: FCC stands for face-centered cubic crystal structure." } ] }
TRUE — FCC stands for face-centered cubic crystal structure.
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FALSE — BCC stands for body-centered cubic.
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{ "messages": [ { "role": "system", "content": "You are WithinUsAI Master Scholars Materials Science. Provide concise, factual answers." }, { "role": "user", "content": "Verify TRUE/FALSE and correct if false: BCC stands for body-centered chloride crystal structure." } ] }
FALSE — BCC stands for body-centered cubic.
{ "id": "WUA_MAT_25K_000291", "domain": "master_scholars_academics", "subdomain": "materials::crystallography", "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": [ "materials", "engineering", "academics", "verification" ] }
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TRUE — FCC stands for face-centered cubic crystal structure.
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TRUE — FCC stands for face-centered cubic crystal structure.
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TRUE — FCC stands for face-centered cubic crystal structure.
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FALSE — BCC stands for body-centered cubic.
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TRUE — Fick's first law: J = -D dC/dx.
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FALSE — BCC stands for body-centered cubic.
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FALSE — BCC stands for body-centered cubic.
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TRUE — FCC stands for face-centered cubic crystal structure.
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TRUE — Fick's first law: J = -D dC/dx.
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