Physical Chemistry and Its Biological ApplicationsPhysical Chemistry and Its Biological Applications ... |
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Page 135
s must be s TOK N2O4 are applies ation was in an aque Fraction of mixture
present as N2OA DOH - HI Figure 4 - 2 Approach to an equilibrium mixture from
either direction , for the reaction N20 , 2NO , . The exact value of the equilibrium ...
s must be s TOK N2O4 are applies ation was in an aque Fraction of mixture
present as N2OA DOH - HI Figure 4 - 2 Approach to an equilibrium mixture from
either direction , for the reaction N20 , 2NO , . The exact value of the equilibrium ...
Page 393
nent , ac laniras Letting x be a variable equal to the deviation of the concentration
from vas achiere the final equilibrium values , so that x = [ A ] – [ Al . = [ C ] – [ C ] ,
one prince can write the rate equation Nobel = kx ( x + [ A ] . ) – k _ ( [ C ] .
nent , ac laniras Letting x be a variable equal to the deviation of the concentration
from vas achiere the final equilibrium values , so that x = [ A ] – [ Al . = [ C ] – [ C ] ,
one prince can write the rate equation Nobel = kx ( x + [ A ] . ) – k _ ( [ C ] .
Page 452
mo If the two solutions are at equilibrium , the total free energy change , the sum
of AGNa + and AGc - , must be zero . ... [ Cl - ) , To illustrate the application of this
equation to equilibria involving ions that cannot pass through a membrane , we ...
mo If the two solutions are at equilibrium , the total free energy change , the sum
of AGNa + and AGc - , must be zero . ... [ Cl - ) , To illustrate the application of this
equation to equilibria involving ions that cannot pass through a membrane , we ...
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Contents
1STATES OF MATTER | 1 |
2SOLUTIONS | 51 |
SECOND LAW AND EQUILIBRIUM | 115 |
Copyright | |
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absorption acid activity adsorbed amount applied atom base bond Calculate carbon carbon tetrachloride cell Chapter charge Chem chemical complex components concentration constant containing corresponding depends described determined direction distance effect electric electron energy enthalpy entropy enzyme equal equation equilibrium example expression field Figure force fraction free energy frequency function given glucose heat hydrogen increase indicated involved ionization kinetic light liquid magnetic material measured membrane method mixture mole molecular molecules motion nuclei observed obtained occurs orbital organic oxygen particles phase positive possible potential present pressure properties protein radiation reactant reaction reduced region represented rotation sample shown shows side sodium solid solution solvent species step structure surface surface tension temperature tion transition unit usually various vibrational volume wave