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Дата написания1970-01-01
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A little borax or phosphorus salt is sometimes added, in order to make the ash fusible.
4
Capillary attraction or repulsion is the cause which determines the ascent or descent of a fluid in a capillary tube. If a piece of thermometer tubing, open at each end, be plunged into water, the latter will instantly rise in the tube considerably above its external level. If, on the other hand, the tube be plunged into mercury, a repulsion instead of attraction will be exhibited, and the level of the mercury will be lower in the tube than it is outside.
5
The late Duke of Sussex was, we believe, the first to shew that a prawn might be washed upon this principle. If the tail, after pulling off the fan part, be placed in a tumbler of water, and the head be allowed to hang over the outside, the water will be sucked up the tail by capillary attraction, and will continue to run out through the head until the water in the glass has sunk so low that the tail ceases to dip into it.
6
The alcohol had chloride of copper dissolved in it: this produces a beautiful green flame.
7
Lycopodium is a yellowish powder found in the fruit of the club moss (Lycopodium clavatum). It is used in fireworks.
8
Bunsen has calculated that the temperature of the oxyhydrogen blowpipe is 8061° Centigrade. Hydrogen burning in air has a temperature of 3259° C., and coal-gas in air, 2350° C.
9
The following is the action of the sulphuric acid in inflaming the mixture of sulphuret of antimony and chlorate of potassa. A portion of the latter is decomposed by the sulphuric acid into oxide of chlorine, bisulphate of potassa, and perchlorate of potassa. The oxide of chlorine inflames the sulphuret of antimony, which is a combustible body, and the whole mass instantly bursts into flame.
10
The "air-burner," which is of such value in the laboratory, owes its advantage to this principle. It consists of a cylindrical metal chimney, covered at the top with a piece of rather coarse iron-wire gauze. This is supported over an argand burner, in such a manner that the gas may mix in the chimney with an amount of air sufficient to burn the carbon and hydrogen simultaneously, so that there may be no separation of carbon in the flame with consequent deposition of soot. The flame, being unable to pass through the wire gauze, burns in a steady, nearly invisible manner above.
11
Water is in its densest state at a temperature of 39.1° Fahrenheit
12
A mixture of salt and pounded ice reduces the temperature from 32° F. to zero—the ice at the same time becoming fluid.
13
Potassium, the metallic basis of potash, was discovered by Sir Humphrey Davy in 1807, who succeeded in separating it from potash by means of a powerful voltaic battery. Its great affinity for oxygen causes it to decompose water with evolution of hydrogen, which takes fire with the heat produced.
14
Professor Faraday has calculated that there is as much electricity required to decompose one grain of water as there is in a very powerful flash of lightning.
15
A solution of acetate of lead submitted to the action of the voltaic current, yields lead at the negative pole, and brown peroxide of lead at the positive pole. A solution of nitrate of silver, under the same circumstances, yields silver at the negative pole, and peroxide of silver at the positive pole.
16
The gas which is thus employed as a test for the presence of oxygen, is the binoxide of nitrogen, or nitrous oxide. It is a colourless gas, which, when brought in contact with oxygen, unites with it, forming hyponitric acid, the red gas referred to.
17
Marble is a compound of carbonic acid and lime. The muriatic acid being the stronger of the two, takes the place of the carbonic acid, which escapes as a gas, the residue forming muriate of lime or chloride of calcium.
18
Lead pyrophorus is made by heating dry tartrate of lead in a glass tube (closed at one end, and drawn out to a fine point at the other) until no more vapours are evolved. The open end of the tube is then to be sealed before the blowpipe. When the tube is broken and the contents shaken out into the air, they burn with a red flash.
19
Water-gas is formed by passing vapour of water over red-hot charcoal or coke. It is a mixture of hydrogen and carbonic oxide; each of which is an inflammable gas.
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Its great affinity for oxygen causes it to decompose water with evolution of hydrogen, which takes fire with the heat produced."},{"id":"contentnotes0:38","kind":"paragraph","text":"Back"},{"id":"contentnotes0:39","kind":"heading","text":"14"},{"id":"contentnotes0:40","kind":"paragraph","text":"Professor Faraday has calculated that there is as much electricity required to decompose one grain of water as there is in a very powerful flash of lightning."},{"id":"contentnotes0:41","kind":"paragraph","text":"Back"},{"id":"contentnotes0:42","kind":"heading","text":"15"},{"id":"contentnotes0:43","kind":"paragraph","text":"A solution of acetate of lead submitted to the action of the voltaic current, yields lead at the negative pole, and brown peroxide of lead at the positive pole. 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It is a mixture of hydrogen and carbonic oxide; each of which is an inflammable gas."},{"id":"contentnotes0:56","kind":"paragraph","text":"Back"}],"toc":[{"id":"content0:0:1","label":"Michael Faraday The Chemical History of a Candle","page":1,"pageUrl":"/books/4ThxyL1g#reader-content"},{"id":"content0:1:1","label":"PREFACE","page":1,"pageUrl":"/books/4ThxyL1g#reader-content"},{"id":"content0:8:1","label":"THE CHEMICAL HISTORY OF A CANDLE","page":1,"pageUrl":"/books/4ThxyL1g#reader-content"},{"id":"content0:9:1","label":"LECTURE I","page":1,"pageUrl":"/books/4ThxyL1g#reader-content"},{"id":"content0:10:1","label":"A CANDLE: THE FLAME—ITS SOURCES—STRUCTURE—MOBILITY—BRIGHTNESS","page":1,"pageUrl":"/books/4ThxyL1g#reader-content"},{"id":"content1:0:5","label":"LECTURE II","page":5,"pageUrl":"/books/4ThxyL1g?page=5#reader-content"},{"id":"content1:1:5","label":"A CANDLE: BRIGHTNESS OF THE FLAME—AIR NECESSARY FOR COMBUSTION—PRODUCTION OF WATER","page":5,"pageUrl":"/books/4ThxyL1g?page=5#reader-content"},{"id":"content2:0:8","label":"LECTURE III","page":8,"pageUrl":"/books/4ThxyL1g?page=8#reader-content"},{"id":"content2:1:8","label":"PRODUCTS: WATER FROM THE COMBUSTION—NATURE OF WATER—A COMPOUND—HYDROGEN","page":8,"pageUrl":"/books/4ThxyL1g?page=8#reader-content"},{"id":"content3:0:12","label":"LECTURE IV","page":12,"pageUrl":"/books/4ThxyL1g?page=12#reader-content"},{"id":"content3:1:12","label":"HYDROGEN IN THE CANDLE—BURNS INTO WATER—THE OTHER PART OF WATER—OXYGEN","page":12,"pageUrl":"/books/4ThxyL1g?page=12#reader-content"},{"id":"content4:0:16","label":"LECTURE V","page":16,"pageUrl":"/books/4ThxyL1g?page=16#reader-content"},{"id":"content4:1:16","label":"OXYGEN PRESENT IN THE AIR—NATURE OF THE ATMOSPHERE—ITS PROPERTIES—OTHER PRODUCTS FROM THE CANDLE—CARBONIC ACID—ITS PROP…","page":16,"pageUrl":"/books/4ThxyL1g?page=16#reader-content"},{"id":"content5:0:20","label":"LECTURE VI","page":20,"pageUrl":"/books/4ThxyL1g?page=20#reader-content"},{"id":"content6:0:25","label":"LECTURE ON PLATINUM","page":25,"pageUrl":"/books/4ThxyL1g?page=25#reader-content"},{"id":"contentnotes0:0:29","label":"1","page":29,"pageUrl":"/books/4ThxyL1g?page=29#reader-content"},{"id":"contentnotes0:3:29","label":"2","page":29,"pageUrl":"/books/4ThxyL1g?page=29#reader-content"},{"id":"contentnotes0:6:30","label":"3","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:9:30","label":"4","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:12:30","label":"5","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:15:30","label":"6","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:18:30","label":"7","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:21:30","label":"8","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:24:30","label":"9","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:27:30","label":"10","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:30:30","label":"11","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:33:30","label":"12","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:36:30","label":"13","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:39:30","label":"14","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:42:30","label":"15","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:45:30","label":"16","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:48:30","label":"17","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:51:30","label":"18","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"},{"id":"contentnotes0:54:30","label":"19","page":30,"pageUrl":"/books/4ThxyL1g?page=30#reader-content"}]},"similarBooks":[],"similarBooksPagination":{"page":1,"pageSize":12,"totalItems":0,"totalPages":1,"hasPrev":false,"hasNext":false}},"notFound":false}