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sarbjit879
18.03.2020 •
Chemistry
What happens to the volume of a gas in a closed container if the temperature increases, but the pressure remains the same? Why?
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Ответ:
Volume will goes to increase.
Explanation:
The given problem will be solve through the Charles Law.
According to this law, The volume of given amount of a gas is directly proportional to its temperature at constant number of moles and pressure.
Mathematical expression:
V₁/T₁ = V₂/T₂
V₁ = Initial volume
T₁ = Initial temperature
V₂ = Final volume
T₂ = Final temperature
So when the temperature goes to increase the volume of gas also increase. Higher temperature increase the kinetic energy and molecules move randomly every where in given space so volume increase.
Now we will put the suppose values in formula.
V₁/T₁ = V₂/T₂
V₂ = V₁T₂/T₁
V₂ = 4.5 L × 348 K / 298 k
V₂ = 1566 L.K / 298 K
V₂ = 5.3 L
Hence prove that volume increase by increasing the temperature.
Ответ:
answer:
in nuclear physics and nuclear chemistry, nuclear fission is a nuclear reaction or a radioactive decay process in which the nucleus of an atom splits into two or more smaller, lighter nuclei. when an atom of nuclear fuel (uranium) absorbs a neutron, the uranium will fission into two smaller atoms (waste) and release one to three neutrons. the kinetic energy of the waste is used to heat the water for the steam turbine. the neutrons are used to fission the next lot of uranium atoms and the process continues. nuclear fission is the process in which a large nucleus splits into two smaller nuclei with the release of energy. in other words, fission the process in which a nucleus is divided into two or more fragments, and neutrons and energy are released.
explanation: