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A piston fielld with 0.04 mole of an ide...

A piston fielld with `0.04` mole of an ideal gas expands eversible from `50.0mL` at a constant temperature of `37.0^(@)C` . As it does so, it absorbe `208J` of heat. The value of `q` and `W` for the process will be `(R=8.314J//molK` , `1n7.5=2.01)`

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A piston filled with 0.04 mole of an ideal gas expands reversibly from 50.0mL at a constant temperature of 37.0^(@)C . As it does so, it absorbs 208J of heat. The value of q and W for the process will be (R=8.314J//molK , 1n7.5=2.01)

A piston filled with 0.04 mol of an ideal gas expands reversibly from 50.0 mL to 375 mL at a constant temperature of 37.0^(@)C . As it does so, it absorbs 208 J of heat. The value of q and w for the process will be: (R=8.314J//molK)(ln 7.5=2.01)

A piston filled with 0.04 mol of an ideal gas expands reversibly from 50.0 mL to 375 mL at a constant temperature of 37.0^(@)C . As it does so, it absorbs 208 J of heat. The value of q and w for the process will be: (R=8.314J//molK)(ln 7.5=2.01)

A piston filled with 0.04 mole of an ideal gas expands reversible from 50.0 mL to 375 mL at a constant temperature of 37.0^(@)C . As it does so, it absorbs 208 J of heat. The values of q and w for the process will be: (R=3.14J/molK) (in 7.5=2.01)

A piston filled with 0.04mole of an ideal gas expa nds teversibly from 50.0mL to 375mL at a constant temperature of 37.0^@C . As It does so, it absorbs 208J of heat. The values of q and W for the process will be (R = 8.314J/mol K, In 7.5 = 2.01)