When crisps are burnt, the oils and starches they contain undergo a combustion reaction with oxygen in the air, releasing a large amount of heat and light energy. In addition, the fats in the crisps contribute to the high energy content of the combustion process, resulting in a noticeable release of energy when they are burnt.
The Big Bang released an immense amount of energy, estimated to be equivalent to about 1045 joules.
To release the same amount of energy as one kilogram of uranium undergoing nuclear fission, approximately 3.6 metric tons of coal would need to be burned. Uranium undergoes much more efficient energy release through fission compared to burning coal.
Nuclear reactions release more energy than chemical reactions because they involve changes in the nucleus of an atom, where much larger amounts of energy are stored compared to the energy stored in the electron shells involved in chemical reactions.
A gamma-ray burst can release as much energy in a few seconds as the Sun will emit over its entire lifespan of about 10 billion years. They are one of the most energetic events in the universe.
The Sun releases about 384.6 yottajoules of energy per second. This is equivalent to converting 4.2 million metric tons of mass into energy every second through nuclear fusion in its core.
Just about one-half, due to losses of Energy.
All crisps are high in fat, salt, and starch (unless they are baked and then there's not so much fat). So none of them are a source of energy.
MLB player Coco Crisp weighs 185 pounds.
MLB player Coco Crisp made $7500000 in the 2014 season.
crisps have 16grams of fat
$4.30
1 kg of U-235 will produce as much energy as 1500 tons of coal
Gram for gram, lipids release twice as much energy as carbohydrates do.
Ethanol releases about 21.1 megajoules of energy per liter when burned.
It is 35%.
25-50 watts.
Many substances can be burned to release heat energy, pretty much anything. However, water or ice is one that can not.