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a sample of n2o3(g) has a pressure of 0.010 atm . the temperature (in k) is then doubled and the n2o3 undergoes complete decomposition to no2(g) and no(g). part a find the total pressure of the mixture of gases assuming constant volume and no additional temperature change. Enter your answer numerically, in terms of atm.

Sagot :

Thus, the total pressure is 0.184 atm.

What is Pressure?

The amount of pressure exerted (thrust) on a floor in line with unit place is described as ‘pressure’. It can also be defined as the ratio of the force to the place (over which the pressure is performing).

The force applied perpendicular to the surface of an object in step with unit vicinity over which that force is sent.

PV=nRT is the ideal gas equation.

Where P denotes pressure, V denotes volume, n is the number of moles, R denotes the gas constant, and T denotes temperature.

As a result, the temperature of the  sample will only be doubled, with the same volume and number of moles. Because temperature and pressure are inextricably linked, if one rises, the other must rise as well, resulting in a pressure of 0.092 atm.

The following are the steps in the breakdown process: Decomposition reaction:  ⇄  +

As a result, 1 mole of   produces 2 moles of products (1 of each), and n doubles. The pressure will double to 0.184 atm since the volume and temperature are now constants, and the pressure is directly proportional to the number of moles.

Thus, the total pressure is 0.184 atm.

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