States of Matter = Using the combined gas law For many purposes we can treat butane (C4H10) as an ideal gas at temperatures above its boiling point of -1. °C. 3 Suppose the pressure on a 5.0 m² sample of butane gas at 10.0°C is doubled. Is it possible to change the temperature of the butane at the same time such that the volume of the gas doesn't change? If you answered yes, calculate the new temperature of the gas. Round your answer to the nearest °C. Explanation Check Oyes ☐ x x10 no ☐ °C 4/5

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States of Matter
=
Using the combined gas law
For many purposes we can treat butane (C4H10) as an ideal gas at temperatures above its boiling point of -1. °C.
3
Suppose the pressure on a 5.0 m² sample of butane gas at 10.0°C is doubled.
Is it possible to change the temperature of the butane at the same time such that
the volume of the gas doesn't change?
If you answered yes, calculate the new temperature of the gas. Round your
answer to the nearest °C.
Explanation
Check
Oyes
☐ x
x10
no
☐ °C
4/5
Transcribed Image Text:States of Matter = Using the combined gas law For many purposes we can treat butane (C4H10) as an ideal gas at temperatures above its boiling point of -1. °C. 3 Suppose the pressure on a 5.0 m² sample of butane gas at 10.0°C is doubled. Is it possible to change the temperature of the butane at the same time such that the volume of the gas doesn't change? If you answered yes, calculate the new temperature of the gas. Round your answer to the nearest °C. Explanation Check Oyes ☐ x x10 no ☐ °C 4/5
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