Outlines of Theoretical ChemistryLongmans, Green and Company, 1892 - 220 páginas |
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Página 15
... silver thallium Totally different results are obtained in the case of many metals if we determine directly the quantity of metal which will unite with one equivalent weight of oxygen ( 7.98 parts ) or of chlorine ( 35 · 37 parts ) . The ...
... silver thallium Totally different results are obtained in the case of many metals if we determine directly the quantity of metal which will unite with one equivalent weight of oxygen ( 7.98 parts ) or of chlorine ( 35 · 37 parts ) . The ...
Página 18
... silver . But the equivalent of silver can be replaced isomorphously by 63.18 parts by weight of copper , and the latter metal is a member of the group of metals forming vitriols and can be isomorphously replaced by— 58.6 parts by weight ...
... silver . But the equivalent of silver can be replaced isomorphously by 63.18 parts by weight of copper , and the latter metal is a member of the group of metals forming vitriols and can be isomorphously replaced by— 58.6 parts by weight ...
Página 21
... silver is replaced by one of copper . But if we assume that each atom of silver is replaced by two atoms of copper , then the atomic weight of copper will be 31.59 , which is identical with the chemical equivalent weight given in § 11 ...
... silver is replaced by one of copper . But if we assume that each atom of silver is replaced by two atoms of copper , then the atomic weight of copper will be 31.59 , which is identical with the chemical equivalent weight given in § 11 ...
Página 23
... Silver 0.057 107.66 6.1 Cadmium . 0.054 111.7 6.0 Indium 0.057 113.6 6.5 Tin 0.055 118.8 6.5 Antimony 0.051 119.6 6.1 Tellurium 0.048 125.0 6.0 Iodine 0.054 126-54 6.8 Lanthanum 0.045 138.0 6.2 Cerium 0.045 139.9 6.3 Tungsten 0.033 ...
... Silver 0.057 107.66 6.1 Cadmium . 0.054 111.7 6.0 Indium 0.057 113.6 6.5 Tin 0.055 118.8 6.5 Antimony 0.051 119.6 6.1 Tellurium 0.048 125.0 6.0 Iodine 0.054 126-54 6.8 Lanthanum 0.045 138.0 6.2 Cerium 0.045 139.9 6.3 Tungsten 0.033 ...
Página 26
... silver iodide , for example , we have- Silver Iodine · A.c · A.c 107 · 66 × 0 · 056 = 6 · 1 126 · 54 × 0 · 054 = 6 · 8 Total 12.9 The specific heat of silver iodide ( AgI ) is c = 0.061 . If this value is multiplied by the sum of the ...
... silver iodide , for example , we have- Silver Iodine · A.c · A.c 107 · 66 × 0 · 056 = 6 · 1 126 · 54 × 0 · 054 = 6 · 8 Total 12.9 The specific heat of silver iodide ( AgI ) is c = 0.061 . If this value is multiplied by the sum of the ...
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affinities alcohol amount anion atom of hydrogen atomic heats atomic linking atomic volume atomic weights Avogadro's law benzene Berzelius bodies boiling point bromine calculated carbon atom chemical change Chemistry chlorine combination composition consequently constituents contain copper Crown 8vo crystallise decomposed decomposition determined diffusion dissociation electricity electrolyte elements equivalent weights ether ethyl example exhibit fact formula freezing point fusible gaseous gases hydrochloric acid hydrogen atoms hydroxyl increases investigated iodide iodine ions isomeric isomorphous kinetic liquid malic acid melting point metals method mixture molecular weight molecules monovalent monovalent atoms nature nitrogen number of atoms number of particles obtained organic compounds oxide oxygen phenomena polyvalent atom potassium pressure produced properties proportion quantity replaced represented salt similar solid solution specific heat stœchiometric substances sulphate sulphur takes place Tellurium temperature theory thermic equivalent tion values velocity volatile weight of hydrogen weight of oxygen whilst zinc