Chemistry, Inorganic and Organic: With Experiments and a Comparison of Equivalent and Molecular Formulæ |
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Page 12
... flask with a long narrow neck , which was placed in a sand- bath , so that its temperature might be constantly maintained at about 660 ° F. for several weeks . The mercury boiled , and a portion of it was converted into vapour , which ...
... flask with a long narrow neck , which was placed in a sand- bath , so that its temperature might be constantly maintained at about 660 ° F. for several weeks . The mercury boiled , and a portion of it was converted into vapour , which ...
Page 13
... flask , B Dai Fig . 9. - Preparation of oxygen . in which the glass tube B is fixed by a perforated cork . C is a ... flask . The first jar of gas will contain the air with which the flask was filled at the commencement of the experiment ...
... flask , B Dai Fig . 9. - Preparation of oxygen . in which the glass tube B is fixed by a perforated cork . C is a ... flask . The first jar of gas will contain the air with which the flask was filled at the commencement of the experiment ...
Page 20
... flask are made to approach to within about inch , so that the spark may pass easily between them . The flask is somewhat more than half filled with water , the cork inserted , and the tube B allowed to dip beneath the water in the ...
... flask are made to approach to within about inch , so that the spark may pass easily between them . The flask is somewhat more than half filled with water , the cork inserted , and the tube B allowed to dip beneath the water in the ...
Page 23
... flask ( C ) , which is connected with the iron tube by a glass tube ( D ) and perforated corks . The hydrogen is collected from the glass tube ( G ) in cylinders ( E ) filled with water , and inverted in the trough ( F ) upon the bee ...
... flask ( C ) , which is connected with the iron tube by a glass tube ( D ) and perforated corks . The hydrogen is collected from the glass tube ( G ) in cylinders ( E ) filled with water , and inverted in the trough ( F ) upon the bee ...
Page 38
... flask fur- nished with a tube also filled with the water , and passing under a gas cylinder standing in a trough of the same water ( fig . 42 ) , it will be found * The temperature of this flame has been estimated at above 14,000 ° F ...
... flask fur- nished with a tube also filled with the water , and passing under a gas cylinder standing in a trough of the same water ( fig . 42 ) , it will be found * The temperature of this flame has been estimated at above 14,000 ° F ...
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Common terms and phrases
absorbed acetic action alcohol alkalies alumina ammonia anhydrous antimony arsenic arsenious acid atomic baryta binoxide blue boiling bottle bromine burning carbonic acid charcoal chemical chlorate of potash chloric acid chloride colour colourless combining weight combustion composition compound containing converted cool copper crystallised crystals decomposed decomposition deposited diluted dissolved distilled elements employed equivalent ether ethyle evaporated evolved explosion flame flask formula furnace fused gases glass grains heated hydrated hydrochloric acid hydrogen insoluble iodide iodine iron lead lime liquid magnesia manganese marsh-gas matter mercury metal mineral mixed mixture nitrate nitric acid nitrogen nitrous obtained odour olefiant gas ordinary oxalic oxide oxidised oxygen passed phosphoric acid phosphorus platinum potassium powder precipitate prepared produced proportion quantity represented salt sesquioxide silicic acid silicon silver soda sodium soluble solution specific gravity substance sulphate sulphide sulphuric acid temperature tion tube vapour vols volume whilst yellow zinc