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Notes on Physical Laboratory Experiments in Heat

Notes on Physical Laboratory Experiments in Heat


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This historic book may have numerous typos and missing text. Purchasers can usually download a free scanned copy of the original book (without typos) from the publisher. Not indexed. Not illustrated. 1904 edition. Excerpt: ...volume of ice = 1.09 com., specific volume of water at 0 C. = 1.00 c.cm. GENERAL DISCUSSION This discussion should be carefully studied before beginning any experimental work on calorimetry. Calorimetry is the process of measuring quantities of heat. The process in general consists in transforming a quantity of some form of energy, as electrical energy or mechanical energy into heat energy, in a vessel called the calorimeter which contains water, or some other appropriate liquid, and in measuring the resulting phenomenon produced. By the principle of the conservation of energy the quantity of energy thus introduced is equal to the sum of all the energy changes resulting in the calorimeter, supposing the latter to receive no other energy from, or give no energy to, the surroundings. The various calorimetric methods devised seek to reduce these energy changes to the simplest and most accurately measurable forms. The most common method, known as the Method of Mixtures, consists in introducing the energy directly into a calorimeter containing a known weight of water, in which case the phenomenon to be measured is simply the resulting rise of temperature of the calorimeter and water. If this be accurately determined and the weight and specific heat of the water, together with the weight and the specific heat of the calorimeter and all its parts be known, the quantity of heat energy introduced into the calorimeter is given at once by the expression: --q = w0s0-+2wkskAt (1) where w0 and s is the weight and specific heat, respectively, of the water (s0 may usually be taken equal to unity), wt, st are the weights and specific heats, respectively, of the materials constituting the various parts of the calorimeter, and M is the rise of..."


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Product Details
  • ISBN-13: 9781234384739
  • Publisher: Rarebooksclub.com
  • Publisher Imprint: Rarebooksclub.com
  • Height: 246 mm
  • No of Pages: 24
  • Spine Width: 1 mm
  • Width: 189 mm
  • ISBN-10: 1234384736
  • Publisher Date: 22 Jan 2013
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 64 gr


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