In order to have a volume of 216 ml, the methane have to be compressed at a pressure of 1509 kPa.
Explanation:
This problem is solved by using Boyle's law which states that at constant temperature pressure of a gas is inversely proportional to its volume. It describes how the pressure of a gas increases with a decrease in the volume of a container. The formula is given as,
P1 V1 = P2 V2
where P1 and V1 are first pressure and volume,
P2 and V2 are second pressure and volume.
Given P1 = 503 kPa, V1 = 648 ml, and V2 = 216 ml
P2 = (P1 V1 ) / V2 = (503 648) / 216
P2 = 1509 kPa.
Explanation:
Consider the example of the electric fan. The electrical energy used in the electric fan is greater than the kinetic energy of the moving fan blades.
According to the law of conservation of the energy, the energy is neither created nor destroyed. It always remains same.
The electrical energy used in the electric fan is also used in the producing unwanted sound energy.
The electrical energy in the electric fan is converted into any unwanted forms of energy. Like in producing unwanted sound energy and the heat energy. If the electric fan shakes then some of the electric energy is converted into unwanted kinetic energy.
Here, the electrical energy changes into sound energy, heat energy and kinetic energy.
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