Solve the Murder.
Master the Science.
Step into an animated neon crime lab where every blood drop, security code, and orbital trajectory is a rigorous mathematics and science puzzle waiting to be decoded.

Vector anomalies detected in the magnetic containment field.
v(t) = int a(t) dt + v_0Particle velocity deviation points to an artificial chamber seal breach.
Four Levels. Twelve Scientific Riddles.
Every case progression demands concrete mathematical and physical deduction. Follow the evidence trails, utilize precise telemetry, and protect your forensic clearance rating.
Required STEM Puzzles (3 / 3)
Calculate bullet exit velocity and initial angle from micro-impact angles embedded in reinforced cockpit hull.
y = x*tan(theta) - (g*x^2)/(2*v0^2*cos^2(theta))Reconstruct the station hatch spin rate after sudden decompression to isolate forced mechanical entry vs explosive breach.
L = I * omega = constTrace localized micro-singularity distortions to identify the illicit warp engine discharge timestamp.
h_ab = (2*G / (c^4 * r)) * d^2(Q_ab)/dt^2Single Hint Protocol
1 Clue Per Question AllowedDetectives receive exactly 1 decrypt hint per question. Hints disclose the mathematical isolation step without solving the puzzle.
Hint activation deducts -15% Rating Deductible from your level rating score.
Investigation Rating System
Evaluated upon clearing Level 01Zero hints utilized, flawless STEM deduction
Single hint per level, optimal formula solving
Multiple hints used, verified solution verified
Needs additional practice on foundational principles
Evidence Analysis Workflow
Every Quantum Crime Files case unfolds in a structured scientific cycle. Collect animated clues, evaluate STEM theorems inside orbital telemetry terminals, and prove your deduction to unlock next-level story chapters.
Vector Crime Scene Scan
Isolate anomalous particle trajectories and measure laser deflection angles across the simulated quantum laboratory chamber.
- Monochromatic photon emission recorded at 03:42:18 UTC
- Triangulated scatter points correspond to suspect laboratory grid B-4
- Thermal dispersion indicates localized cryogenic cooling event
Ready to Test Your Analytical Deductions?
Enter the animated investigation now. Examine crime scene clues, calculate trajectory telemetry, and solve the murder-mystery.
Mission Parameters & Case Telemetry
Every crime scene is governed by scientific reality. Track your forensic progression across structured mystery tiers, analyze laboratory metrics, and monitor your deductive accuracy.
3 per clearance level
From Novice to Lead Detective
Calibrated STEM hints
Performance clearance rating
Four Progressive Investigation Tiers
Solve three sequential puzzles to clear each tier and elevate your analytical badge before entering the final verdict.
Basic vector analysis and molecular balancing
Orbital trajectory calculations and spectroscopy
Quantum decay rates and algebraic cryptographic keys
Multi-variable forensic deduction and thermodynamics
Evaluated Forensic Disciplines
Mathematical Logic
Core Vector DeductionQuadratic models, geometric proofs, and kinetic coordinate decoding.
Forensic Chemistry
Spectroscopy & IsotopesChemical reaction analysis, stoichiometric ratios, and pH mapping.
Spatial & Temporal Deduction
Trajectory TelemetryChronological timestamps, parallax triangulation, and velocity paths.
Begin at Tier 01, test your mathematical calculations against the crime scene evidence, and reveal the truth through empirical scientific deduction.
Access the Quantum Crime Files
A high-stakes murder mystery demands forensic precision. Unravel animated forensic trajectories, calculate kinetic vectors, and deploy analytical deduction across four escalating tiers.