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[" 38.The standard atate Chiline fres an...

[" 38.The standard atate Chiline fres and "],[" formation of Ctaraphite,and ( "],[T'=298K" are "],[Delta,Q^(0)[C(" graphites ")]=0kl" mexts "],[Delta,Q^(0)[C(" diamond ")=2.9kJ" mest "],[" The standard state means that the per "],[" should be "1" bar,and substance show "],[" at a given temperature.The conversing "],[" graphite [C(graphite)] to diamond "],[" reduces its volume by "2times10^(-8)m^(3)mol],[" C (graphite) is converted to C(diamon "],[" isothermally at "T'=298K" ,the pressur "],[" which C(graphite) is in equilibrium "],[" C (diamond),is "]

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The standard state Gibbs free energies of formation of ) C(graphite and C(diamond) at T = 298 K are Delta_(f)G^(@)["C(graphite")]=0kJ mol^(-1) Delta_(f)G^(@)["C(diamond")]=2.9kJ mol^(-1) The standard state means that the pressure should be 1 bar, and substance should be pure at a given temperature. The conversion of graphite [ ) C(graphite ] to diamond [C(diamond)] reduces its volume by 2xx10^(-6)m^(3) mol^(-1). If ) C(graphite is converted to C(diamond) isothermally at T = 298 K, the pressure at which ) C(graphite is in equilibrium with C(diamond), is ["Useful information:"1J=1kg m^(2)s^(-2),1Pa=1kgm^(-1)s^(-2),1"bar"=10^(5)Pa]

The standard state Gibbs free energies of formation of ) C(graphite and C(diamond) at T = 298 K are Delta_(f)G^(@)["C(graphite")]=0kJ mol^(-1) Delta_(f)G^(@)["C(diamond")]=2.9kJ mol^(-1) The standard state means that the pressure should be 1 bar, and substance should be pure at a given temperature. The conversion of graphite [ ) C(graphite ] to diamond [C(diamond)] reduces its volume by 2xx10^(-6)m^(3) mol^(-1). If ) C(graphite is converted to C(diamond) isothermally at T = 298 K, the pressure at which ) C(graphite is in equilibrium with C(diamond), is ["Useful information:"1J=1kg m^(2)s^(-2),1Pa=1kgm^(-1)s^(-2),1"bar"=10^(5)Pa]

For conversion C (graphite) rarrC (diamond) the DeltaS is

The value of DeltaH_("transition") of C (graphite) to C (diamond) is 1.9 kJ/mol at 25^(@) C entropy of graphite is higher than entropy of diamond. This implies that: