Inorganic Chemistry |
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Page 56
... corresponding to the atomic proportion will be found by dividing this molecular volume by the number of atoms in the molecule . Thus we find that for a monat- omic gas , the volume representing one atomic proportion - or , as it may be ...
... corresponding to the atomic proportion will be found by dividing this molecular volume by the number of atoms in the molecule . Thus we find that for a monat- omic gas , the volume representing one atomic proportion - or , as it may be ...
Page 63
... correspond to the formula NHCl in other words , the accepted atomic weights of nitrogen and chlorine would have to ... corresponding to the molecular formula H2F2 . This in no way invalidates the foregoing conclusions . † Stochiometric ...
... correspond to the formula NHCl in other words , the accepted atomic weights of nitrogen and chlorine would have to ... corresponding to the molecular formula H2F2 . This in no way invalidates the foregoing conclusions . † Stochiometric ...
Page 65
... corresponding elements . The corresponding elements are frequently termed the isomorphous elements , although they do not , when isolated , necessarily crystallize in the same forms . The sense in which the term isomorphous is used when ...
... corresponding elements . The corresponding elements are frequently termed the isomorphous elements , although they do not , when isolated , necessarily crystallize in the same forms . The sense in which the term isomorphous is used when ...
Page 66
... corresponding elements occur in the proportion of 32 parts by weight of sulphur to 55 of manganese . In the isomorphous perchlorates and permanganates , the proportion in which the corresponding elements occur is 35.5 parts of chlorine ...
... corresponding elements occur in the proportion of 32 parts by weight of sulphur to 55 of manganese . In the isomorphous perchlorates and permanganates , the proportion in which the corresponding elements occur is 35.5 parts of chlorine ...
Page 67
... corresponding with those of antimonious oxide , with which arsenious anhydride is thus isodi- morphous . The law of isomorphism was first enunciated by Mitscherlich , in 1819 . The determinations of atomic weights by means of this law ...
... corresponding with those of antimonious oxide , with which arsenious anhydride is thus isodi- morphous . The law of isomorphism was first enunciated by Mitscherlich , in 1819 . The determinations of atomic weights by means of this law ...
Contents
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Common terms and phrases
alkaline ammonia ammonic ammonic chloride amorphous anhydrous Antimonious aqueous solution argentic arsenic atomic weight baric Bismuthous boiling boric bromide calcic carbonic anhydride carbonic oxide caustic color colorless combination compound contains converted copper criths crystalline crystals cupric decomposed decomposition deliquescent deposited dilute dipotassic dissolves distillation disulphide elements employed evolved excess ferric ferrous fluoride formed formula fused heated hydrate hydric hydriodic acid hydrochloric acid hydrofluoric acid hydrogen insoluble iodide iodine iron liquid litre magnesic mass mercury metallic mixture Molecular volume Molecular weight molecules monoclinic nitrate nitric acid nitric peroxide nitrogen nitrous obtained OH₂ ordinary temperatures oxygen phosphate phosphoric acid platinum plumbic potassic carbonate Potassic chloride Potassic hydrate potassium powder precipitate Preparation.-1 prepared prisms reaction Reactions.-1 rhombic salt silicic SO₂Ho₂ sodic sodic carbonate sodium soluble in water Stannous substance sulphide sulphuretted hydrogen sulphuric acid sulphurous anhydride tube vapor water of crystallization whilst yellow yielding zinc Zincic
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