Experimental Proofs of Chemical Theory for Beginners
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Experimental Proofs of Chemical Theory for Beginners

Experimental Proofs of Chemical Theory for Beginners


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This historic book may have numerous typos and missing text. Purchasers can download a free scanned copy of the original book (without typos) from the publisher. Not indexed. Not illustrated. 1884 edition. Excerpt: ...instant, single molecules must possess widely differing kinetic energies, MV?, MV, MV3 etc., although the kinetic energy of the whole system remains constant. As regards pressure, however, the result is the same as if all the TV molecules possessed the mean kinetic energy, (5) lmnJ.MV? + MV? + MV + Most of the molecules will possess nearly this mean kinetic energy. Those which exceed the mean will be balanced by those which possess less energy, and comparatively few molecules will move with very much smaller or very much greater velocity. From equation (4) it has been seen that the pressure on a unit of surface is equal to MNV. Now, although the mass of a molecule and the total number of molecules in a unit volume are both unknown, yet the product of the two, MN, constitutes density, or weight of unit volume; for the mass of each molecule, multiplied by the number of molecules in a unit volume gives the mass of that volume, and density is the mass of a unit volume compared with some standard. Calling density p, (6) P-lpVi. 50. Now the temperature of a gas is independent of its density. This has been experimentally proved by allowing a compressed gas to expand into a vacuum, whereby no alteration of temperature occurred. The density, that is the number of molecules in unit volume was thus altered, but there is no reason to suppose that in entering an empty space, the molecules undergo any change of velocity. The temperatures of two portions of any one gas are equal when the one portion does not impart heat or energy to the other, that is, when the average kinetic energy, MV, of the individual molecules of both portions of the gas is the same, whatever pressure they may be exposed to, or whatever their densities may be. If t and...


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Product Details
  • ISBN-13: 9781151314949
  • Publisher: Rarebooksclub.com
  • Publisher Imprint: Rarebooksclub.com
  • Height: 246 mm
  • No of Pages: 30
  • Spine Width: 2 mm
  • Width: 189 mm
  • ISBN-10: 1151314943
  • Publisher Date: 01 Jul 2012
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 73 gr

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