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N molecules , each of mass m, of gas A a...

N molecules , each of mass m, of gas A and 2 N molecules , each of mass 2m, of gas B are contained in the same vessel which is maintained at a temperature T. The mean square volcity of molecules of B type is denoted by ` V_(2)` and the mean square velocity of A type is denoted by `V_(1)` then `(V_(1))/(V_(2))` is

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N molecules , each of mass m, of gas A and 2 N molecules , each of mass 2m, of gas B are contained in the same vessel which is maintained at a temperature T. The mean square velocity of molecules of B type is denoted by V_(2) and the mean square velocity of A type is denoted by V_(1) then (V_(1))/(V_(2)) is

N molecules, each of mass m of gas A and 2 N molecules each of mass 2m of gas B are containted in the same vessel which is maintained at temperature T. The mean square velocity of molecules of B type is denoted by v^(2) and the mean square velocity of A type is denoted by (omega)^(2) . the omega^(2)//v^(2) is:

N molecules each of mass m of gas A and 2 N molecules each of mass 2m of gas B are contained in the same vessel which is maintined at a temperature T. The mean square of the velocity of the molecules of B type is denoted by v^(2) and the mean square of the x-component of the velocity of a tye is denoted by omega^(2) . What is the ratio of omega^(2)//v^(2) = ?

N molecules each of mass m of gas A and 2 N molecules each of mass 2m of gas B are contained in the same vessel which is maintined at a temperature T. The mean square of the velocity of the molecules of B type is denoted by v^(2) and the mean square of the x-component of the velocity of a tye is denoted by omega^(2) . What is the ratio of omega^(2)//v^(2) = ?