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At constant temperature, a bulb A' of volume 100 mL containing an ideal gas was connected to andiner evacuated bulb 6 The pressure foll down to 50% of its initial pressure. The volume of the bulb B (in mL) is?
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At constant temperature, a bulb A' of volume 100 mL containing an idea...
Problem Statement: Find the volume of bulb B when a bulb A' of volume 100 mL containing an ideal gas was connected to an evacuated bulb B. The pressure of A' fell down to 50% of its initial pressure at constant temperature.

Solution:
To solve this problem, we need to apply Boyle's law which states that at constant temperature, the product of the pressure and the volume of an ideal gas is constant. Mathematically, PV = constant.

Let's assume that the initial pressure of the gas in bulb A' is P1 and its volume is V1. The final pressure after connecting to bulb B is P2 and the final volume is V2.

According to the problem statement, the temperature is constant. Therefore,

P1V1 = P2V2

Also, it is given that the pressure of A' fell down to 50% of its initial pressure. Therefore,

P2 = 0.5P1

Substituting P2 in the above equation, we get:

P1V1 = (0.5P1)V2

V2 = (P1V1)/(0.5P1)

V2 = 2V1

Therefore, the volume of bulb B is 200 mL.

Answer: The volume of bulb B is 200 mL.
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At constant temperature, a bulb A' of volume 100 mL containing an ideal gas was connected to andiner evacuated bulb 6 The pressure foll down to 50% of its initial pressure. The volume of the bulb B (in mL) is?
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