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Given a volume of 1000. cm^3 of an ideal gas at 300. K, what volume would it occupy at a temperature of 600. K?

Respuesta :

Answer:2000cm3

Explanation: this is Charles' law which has the expression V1/T1 = V2/T2

Making V2 the subject of the formula, we have that

V2 = V1 x T2/ T1

= 1000 x 600 / 300

= 2000cm3

Where:

V1= initial velocity

V2= Final velocity

T1= initial temperature

T2= Final temperature

2000cm³ would it occupy at a temperature of 600 K.

This is Charles' law which has the expression V1/T1 = V2/T2

Making V2 the subject of the formula, we have that

V2 = V1 x T2/ T1

= 1000 x 600 / 300

= 2000cm³

Where:

V1= initial velocity

V2= Final velocity

T1= initial temperature

T2= Final temperature

What is Charles Law?

Charles's law is a statement that the volume occupied by a fixed amount of gas is directly proportional to its absolute temperature if the pressure remains constant. This empirical relation was first suggested by the French physicist J. -A. -C.

Learn more about Charles Law here https://brainly.com/question/888898

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