Pick a correct description of Charles's law:: Equal amounts of gases occupy the same A. volume at constant temperature and pressure. The volume of a fixed amount of gas is B. inversely proportional to its pressure at constant temperature. The rates of effusion of gases are inversely C. proportional to the square roots of their molar masses. The total pressure of a mixture of gases is the D. simple sum of the partial pressure of all of the gaseous compounds. The volume of a fixed amount of gas is E. directly proportional to its temperature in Kelvin at constant pressure.
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Step 1: Charles's law states that the volume of a fixed amount of gas is directly proportional to its temperature in Kelvin at constant pressure. Show more…
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Charles's law states that: Equal amounts of gases occupy the same volume at constant temperature and pressure. The rates of effusion of gases are inversely proportional to the square roots of their molar masses. The volume of a fixed amount of gas is inversely proportional to its pressure at constant temperature. The volume of a fixed amount of gas is directly proportional to its temperature in Kelvin at constant pressure. The total pressure of a mixture of gases is the simple sum of the partial pressure of all of the gaseous compounds.
Adi S.
In the context of the ideal gas law: Charles's law relates the pressure and volume of a gas: Collisions between gas particles and the walls of their container result in the pressure exerted by the gas. Boyle's law is obeyed only under conditions of constant temperature The molar gas constant has the same value for all gases
Sri K.
Which of the following is NOT a postulate of the kinetic molecular theory of gases? (a) The molecules possess a volume that is negligibly small compared to the container (b) The pressure and volume of a gas are inversely related (c) Gases consist of discrete particles that are in constant chaotic motion (d) The average kinetic energy of the molecules is directly proportional to the temperature
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