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Total = 6-301 mul . 10. Calculate the volume of a 1.00 L sample of gas...
1. A sample of an ideal gas has a volume of 2.26 L at 278 K and 1.10 atm. Calculate the pressure when the volume is 1.80 L and the temperature is 303 K. 2. The volume of a sample of hydrogen gas was decreased from 10.76 L to 4.05 L at constant temperature. If the final pressure exerted by the hydrogen gas sample was 8.39 atm, what pressure did the hydrogen gas exert before its volume was decreased? 3....
A sample of neon gas occupies a volume of 8.49 L at 46.0°C and 1.00 atm. If it is desired to increase the volume of the gas sample to 9.72 L, while decreasing its pressure to 0.730 atm, the temperature of the gas sample at the new volume and pressure must be C.
A sample of an ideal gas at 1.00 atm and a volume of 1.91 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 90.0 atm, what was the volume of the sample? Assume that the temperature was held constant. L V 52 e .
A sample of an ideal gas at 1.00 atm and a volume of 1.59 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 55.0 atm what was the volume of the sample? Assume that the temperature was held constant.
A sample of an ideal gas at 1.00 atm and a volume of 1.85 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 85.0 atm, what was the volume of the sample? Assume that the temperature was held constant.
A sample of an ideal gas at 1.00 atm and a volume of 1.86 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 65.0 atm, what was the volume of the sample? Assume that the temperature was held constant.
A sample of an ideal gas at 1.00 atm and a volume of 1.73 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 50.0 atm, what was the volume of the sample? Assume that the temperature was held constant.
1.) A sample of neon gas occupies a volume of 7.59 L at 65.0°C and 387 torr. If the volume of the gas sample is decreased to 6.56 L, while its temperature is decreased to 3.0°C, the resulting gas pressure will be torr. 2.)A sample of xenon gas occupies a volume of 8.71 L at 41.0°C and 1.25 atm. If it is desired to decrease the volume of the gas sample to 6.54 L, while increasing its pressure to 1.55...
Question 4 of 21 A sample of an ideal gas at 1.00 atm and a volume of 1.76 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 75.0 atm, what was the volume of the sample? Assume that the temperature was held constant.Questions of 21 A hot air balloon is filled with 1.31 x 10 L of an ideal...
The volume of a sample of hydrogen gas was decreased from 13.62 L to 6.91 L at constant temperature. If the final pressure exerted by the hydrogen gas sample was 7.86 atm, what pressure did the hydrogen gas exert before its volume was decreased