Physical Chemistry and Its Biological ApplicationsPhysical Chemistry and Its Biological Applications ... |
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Page 209
In considering the acid - base balance in the blood , it has been customary in the
past to refer to cations , such as sodium or potassium ion , as " bases . ” Of course
they are not bases , but they are present along with bicarbonate ions which are ...
In considering the acid - base balance in the blood , it has been customary in the
past to refer to cations , such as sodium or potassium ion , as " bases . ” Of course
they are not bases , but they are present along with bicarbonate ions which are ...
Page 211
5 M sodium nitrite ( c ) 0 . 1 M potassium hydrogen phthalate ( d ) 0 . 025 M
lithium formate ( e ) 0 . 0003 M hydrazinium chloride ( f ) 0 . 1 M sodium malonate
( g ) 0 . 075 M anilinium nitrate ( h ) 0 . 5 M sodium dihydrogen phosphate ( i ) 0 .
5 M sodium nitrite ( c ) 0 . 1 M potassium hydrogen phthalate ( d ) 0 . 025 M
lithium formate ( e ) 0 . 0003 M hydrazinium chloride ( f ) 0 . 1 M sodium malonate
( g ) 0 . 075 M anilinium nitrate ( h ) 0 . 5 M sodium dihydrogen phosphate ( i ) 0 .
Page 289
For instance , sodium chloride is formed by the transfer of electrons from sodium
atoms to chlorine atoms , resulting in positive sodium ions and negative chloride
ions . The fairly great stability of sodium chloride in the solid state results from the
...
For instance , sodium chloride is formed by the transfer of electrons from sodium
atoms to chlorine atoms , resulting in positive sodium ions and negative chloride
ions . The fairly great stability of sodium chloride in the solid state results from the
...
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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