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METHODS OF SOLUTION
GENERAL IMPERFECT BOSE GAS IN FIRST APPROXIMATION
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A.L. version absolute zero approximation average becomes Bose-Einstein condensation calculation cell model cell theory Chapter coefficient compared comparison condition considered contributions correct corresponding critical curve defined density derived discussed distribution function effects energy levels entropy equation equilibrium excitations exist expansion expected experiment experimental experimental data expressions fact finite free energy free volume given gives hard-sphere heat Hence higher hole theory ideal Bose gas indicated integral interactions internal introduced lattice leads limit liquid method molecules momentum neglected neighbors obtained occupied operator parameters particles partition function phase phonons Phys potential present pressure problem quantities quantum mechanical radial distribution function reduced region respect shells shown shows solid solution specific statistical taken temperature theoretical thermodynamic properties transition values virial wave