Mechanics Diagrams
Force diagrams, velocity-time graphs, phase diagrams, oscillation waveforms, wave diagrams.
Evidence: MMMU Physics 56.0% — diagram-heavy categories far below average.
Langhui AI STEM-Questions · Subject Hub
Built for SOTA multimodal LLMs. Covers Physics, Chemistry, Biology, and Earth Sciences with a unified 5-model×5-pass pass@k ≤ 40% difficulty threshold. Targets diagram-reasoning gaps revealed by MMMU (Physics 56.0%, Chemistry 50.0%) and SeePhys (Qwen2.5-VL 7B 40.7%).
Science was among the first domains where multimodal LLMs made breakthroughs — MMMU reports GPT-4o at 56.0% on Physics and 50.0% on Chemistry. However, the SeePhys benchmark (1,000 diagram-based physics questions) reveals that Qwen2.5-VL 7B achieves only 40.7% across 7 diagram types, exposing the true difficulty of diagrammatic reasoning. Langhui Science benchmark emphasizes high-diagram-density question types: experiment setups (circuits, apparatus), physics diagrams (force, wave, field, ray), chemical structures and reaction equations, micrographs (cell, tissue, section), maps, and remote sensing imagery.
Force diagrams, velocity-time graphs, phase diagrams, oscillation waveforms, wave diagrams.
Evidence: MMMU Physics 56.0% — diagram-heavy categories far below average.
Circuit diagrams, electromagnetic field lines, Ampere force direction, Lenz's law applications.
Ray diagrams, interference/diffraction patterns, atomic energy level diagrams, semiconductor band diagrams.
Evidence: SeePhys 7 diagram types — Qwen2.5-VL 7B at 40.7%.
P-V diagrams, T-S diagrams, cycle efficiency calculations, Carnot cycle interpretation.
VSEPR geometry prediction, molecular orbital diagrams, hybridization visualization.
Arrow-pushing diagrams, energy profile diagrams, catalytic cycle schematics.
IR/NMR/MS spectrum interpretation, chromatograms, titration curves.
Evidence: MMMU Chemistry 50.0%.
Electron micrographs, organelle identification, signaling pathway diagrams.
Pedigree charts, phylogenetic trees, Punnett squares, gel electrophoresis.
Food web diagrams, population growth curves, biome distribution maps.
Stratigraphic columns, seismic wave diagrams, plate tectonics maps, mineral identification images.
Weather maps, satellite imagery, ocean current diagrams, climate model visualizations.
| Level | Stage | Share | Typical Question Types |
|---|---|---|---|
| L1 Lower Undergrad | Freshman-Sophomore | 15% | Basic formula application, single-concept diagrams |
| L2 Upper Undergrad | Junior-Senior | 45% | Multi-step derivations, complex diagrams, experiment analysis |
| L3 Graduate Entry | GRE / Qualifying exams | 30% | Cross-domain synthesis, research-level reasoning |
| L4 Research | PhD / Frontier research | 10% | Paper-level proofs, advanced modeling |
Prompt: A block of mass m rests on an inclined plane at angle θ with friction coefficient μ. The accompanying diagram shows the force decomposition. Determine the condition for static equilibrium and the direction of the friction force.
Answer: Static equilibrium requires μ ≥ tanθ. Friction acts upward along the incline (opposing the component of gravity mg·sinθ).
5-Model Evaluation
Prompt: An IR spectrum shows a strong broad peak at ~3300 cm⁻¹, a sharp peak at ~1700 cm⁻¹, and peaks at ~1600 and ~1500 cm⁻¹. Identify the functional groups present and propose the most likely compound class.
Answer: 3300 cm⁻¹ (broad) = O-H stretch (carboxylic acid); 1700 cm⁻¹ = C=O stretch; 1600+1500 cm⁻¹ = aromatic C=C. Most likely: an aromatic carboxylic acid.
5-Model Evaluation
JSONL Bulk Download: Full fields + image URLs + 5-model evaluation + reasoning chains.
REST API: GET /DataAssetsAPI/stem-questions/science. For enterprise API keys, contact lk@langhuiai.com.
Each question must achieve ≤40% pass rate across 5 models × 5 passes (GPT-5.1 / Claude Opus 4.6 / Gemini-3.1-Pro / Qwen3.6-Plus / DeepSeek-V4). Human expert accuracy ≥95%, with dual-review gold standard.
Physics (mechanics/electromagnetism/optics/modern physics/thermodynamics), Chemistry, Biology (cell biology/genetics/ecology/microscopy), and Earth Sciences.
Experiment diagrams (circuits, apparatus), physics diagrams (force/wave/field/ray), chemical structures and equations, micrographs, maps, and remote sensing imagery.
Zero overlap. <0.5% pHash+n-gram fingerprint overlap with MMMU, SeePhys, ScienceQA, and 5 other public benchmarks.
All questions undergo dual-review by subject-matter experts. Physics/chemistry numerical answers include step-by-step derivations verified against multiple textbook sources.