17. A mass of gas under constant pressure occupies a volume of 0.5 m3 at a temperature of 20°C. Using the formula for cubic expansion, what will be the volume at a temperature of 45°C without a change in pressure?

17. A mass of gas under constant pressure occupies a volume of 0.5 m3 at a temperature of 20°C. Using the formula for cubic expansion, what will be the volume at a temperature of 45°C without a change in pressure?

A mass of gas under constant pressure occupies a volume of 0.5 m3 at a temperature of 20°C. Using the formula for cubic expansion, the volume at a temperature of 45°C without a change in pressure is 0.5457875 m3. V1/T1 =V2/T2 , 20C= 293.15K , 45 C= 318.15 , 0.5/ 293.15 =V2/318.15 , V2 =0.5 * 318.15 / 293.15 = 0.545.

17. A mass of gas under constant pressure occupies a volume of 0.5 m3 at a temperature of 20°C. Using the formula for cubic expansion, what will be the volume at a temperature of 45°C without a change in pressure?

A mass of gas under constant pressure occupies a volume of 0.5 m3 at a temperature of 20°C. Using the formula for cubic expansion, the volume at a temperature of 45°C without a change in pressure is 0.5457875 m3. V1/T1 =V2/T2 , 20C= 293.15K , 45 C= 318.15 , 0.5/ 293.15 =V2/318.15 , V2 =0.5 * 318.15 / 293.15 = 0.545.

Weegy: If the absolute temperature of a gas is 600 K, the temperature in degrees Celsius is 327 C. User: If a substance forms crystals when it solidifies, its _______ points are the same.
Weegy: If a substance forms crystals when it solidifies, its freezing and melting points are the same.
User: Which one of the following temperatures is equal to 5°C?
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Weegy: If a wave hits a smooth surface at an angle of incidence of 40 degrees, the angle of reflection is: 40 degrees. User: 2. Which of the following statements is an accurate description of sound transmission through various mediums?
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Sound insulators prevent sound from being transmitted better than elastic solids- is an accurate description of sound transmission through various mediums.

Added 10/3/2018 6:39:01 PM

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