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The variables for the formula are incomplete. You would need to know how many grams of butane are put out by the lighter. The molecular weight of butane is 58.12 g/mol, which is also needed to complete the formula.
28g Fe
Balanced equation: 2H2S + 302 = 2SO2 + 2H20
The fire tetrahedron consists of oxygen, heat, fuel and a chemical reaction.
The longer the hydrocarbon the greater the potential energy. You would have too hot a flame if your lighter contained hexane ( a six carbon chain ) instead of butane.Answer:Older lighters used to use lighter fluid (closer to hexane) to provide the flame. A spark would ignite the cloud of hydrocarbon gas at the end of the wick. The fuel was not under pressure as in a butane lighter. It is not suffieciently volatile to turn into a gas a ambient temperaures to provide a gas stream as fuel as is done in modern lighters.As far as the modern lighters, the butane requires less pressure to keep it in its more compact liquid form than propane would. This reduces the needed strength of the containment system increasing the safety while decresing the cost.. At the same time the butane is still sufficiently volatile to evaporate at ambient temperatures and provide fuel for the flame.
The variables for the formula are incomplete. You would need to know how many grams of butane are put out by the lighter. The molecular weight of butane is 58.12 g/mol, which is also needed to complete the formula.
How many grams of oxygen are needed to react completely with 200.0 g of ammonia, NH3?4NH3(g) + 5O2(g) => 4NO(g) + 6H2O(g)
bond energy
Leigha Carmichael
Balanced equation: 2H2S + 302 = 2SO2 + 2H20
28g Fe
Oxygen is needed for aerobic respiration.
Butane is sold in pressurized cans because it is a highly volatile and flammable gas. By keeping it in a pressurized container, the gas is compressed, which increases its stability and reduces the risk of accidental ignition or leaks. The pressurized cans also allow for easy and controlled release of the butane when needed.
because of difference in structure propane (C3H8) has bigger molar mass then butane (C4H10) the molecules of butane are heavier and the forces between them are stronger as in propane, because of this more energy is needed to transfer liquid butane to gas
The fire tetrahedron consists of oxygen, heat, fuel and a chemical reaction.
8,75 moles of oxygen are needed.
Sorry, no it can't. A lighter just doesn't generate the heat needed for cooking.