CRR Peanut Calorimetry Experiment

Coherence • Rupture • Regeneration Framework Applied to Energy Transfer
Precise mathematical modeling of combustion and thermal dynamics

SETUP PHASE
APPARATUS SETTINGS
Water Volume: 50 mL
Peanut Mass: 1.0 g
Bunsen Gas: 50%
CRR Coupling: 0.65
REAL-TIME MEASUREMENTS
Water Temp: 20.0 °C
Water Left: 50.0 mL
Evap Rate: 0.00 mL/s
ΔT: 0.0 °C
Heat (q): 0 J
Calories: 0 cal
Peanut Burned: 0.00 g
Energy/gram: 0 J/g
CRR DYNAMICS
Coherence: 0.50
Flame Temp: 293 K
Ruptures: 0
Thermal Field: 0.00
CRR Physics Model:
Coherence: C(x) = ∫ L(x,τ) dτ
Rupture: δ(t-t₀) at critical thresholds
Regeneration: R[χ](x,t) = ∫ φ(x,τ)·e^(C(x)/Ω)·Θ(t-τ) dτ
Heat Transfer: q = m·c·ΔT (4.18 J/g°C, 95% efficiency)
Evaporation: 2260 J/g × 6.0 boost = ~0.9 mL/s when boiling
Burn Time: 1g peanut = ~22 seconds of flame
Result: Sustained flame + visible water evaporation