An ideal gas initially at 300 K undergoes an isobaric expansion at 2.50 kPa. If the volume increases from 1.00 m3 to 3.00 m3 and 12.5 kJ is transferred to the gas by heat, what are: (a) The change in its internal energy (b) Its final temperature

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An ideal gas initially at 300 K undergoes an isobaric expansion at 2.50 kPa. If the volume increases from 1.00 m3 to 3.00 m3 and 12.5 kJ is transferred to the gas by heat, what are: (a) The change in its internal energy (b) Its final temperature?

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What's the logic behind dividing equation 2 by equation 3 in part B?

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