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TNT equivalent is a convention for expressing energy, typically used to describe the energy released in an explosion. A ton of TNT equivalent is a unit of energy defined by convention to be 4.184 gigajoules (1 gigacalorie). [1] It is the approximate energy released in the detonation of a metric ton (1,000 kilograms) of trinitrotoluene (TNT).
Energy densities table Storage type Specific energy (MJ/kg) Energy density (MJ/L) Peak recovery efficiency % Practical recovery efficiency % Arbitrary Antimatter: 89,875,517,874: depends on density: Deuterium–tritium fusion: 576,000,000 [1] Uranium-235 fissile isotope: 144,000,000 [1] 1,500,000,000
Inflight 125-ton Boeing 767-200 flying at 373 knots (192 m/s) 3.3×10 9 J: Approximate average amount of energy expended by a human heart muscle over an 80-year lifetime [140] [141] 3.6×10 9 J = 1 MW·h (megawatt-hour) 4.2×10 9 J: Energy released by explosion of 1 ton of TNT. 4.5×10 9 J: Average annual energy usage of a standard refrigerator ...
gigaton of TNT: GtonTNT (none) megatonne of TNT: MtTNT (none) 1.0 megatonne of TNT (4.2 PJ) megaton of TNT: MtonTNT Mt kilotonne of TNT: ktTNT (none) 1.0 kilotonne of TNT (4.2 TJ) kiloton of TNT: ktonTNT kt tonne of TNT: tTNT (none) 1.0 tonne of TNT (4.2 GJ) ton of TNT: tonTNT (none) kilogram of TNT: kgTNT (none) 1.0 kilogram of TNT (4.2 MJ ...
The International Steam Table British thermal unit is used. For others, see the full list. 1.0 Btu (1.1 kJ) BTU BTU TNT-based units: gigatonne of TNT: GtTNT (none) 1.0 gigatonne of TNT (4.2 EJ) gigaton of TNT: GtonTNT (none) megatonne of TNT: MtTNT (none) 1.0 megatonne of TNT (4.2 PJ) megaton of TNT: MtonTNT Mt kilotonne of TNT: ktTNT (none)
The detonation velocity values presented here are typically for the highest practical density which maximizes achievable detonation velocity. [ 1 ] The velocity of detonation is an important indicator for overall energy and power of detonation, and in particular for the brisance or shattering effect of an explosive which is due to the ...
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Thus, with t = 0.025 s and the blast radius being 140 metres, and taking ρ to be 1 kg/m 3 (the measured value at Trinity on the day of the test, as opposed to sea-level values of approximately 1.3 kg/m 3) and solving for E, Taylor obtained that the yield was about 22 kilotonnes of TNT (90 TJ).