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Communications from the Kamerlingh Onnes Laboratory of the University of Leiden Volume 1; Nos. 49-60

Communications from the Kamerlingh Onnes Laboratory of the University of Leiden Volume 1; Nos. 49-60


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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. 1900 Excerpt: ...this also is explainable, as then the critical velocity is greatest as compared with the mean velocity and the rate of increase of q is larger. If the critical velocity happened to become much larger than the mean velocity, v would become approximately independent of temperature; hence this might be the explanation of the small influence of the temperature in strong fields, and render it probable that in a very strong field D would become independent of the temperature. A maximum of the quantity DM at--182 C. would not be explained, but one might expect an approach to a constant value, as the critical velocity and hence the mean value of v for the free particles increases proportionately to Af, so that D would decrease nearly proportionately to the inverse of M, which is completely in agreement with our formula, if we put in it D2=0. Our hypothesis throws also some light upon the reason why the increase of the resistance in the magnetic field for small strengths is proportional to a power of Af higher than first. For if we assume Maxwell's law, than the probability that a particle has a velocity smaller small values of x we may take e--x equal to unity, and find then that the number of particles with velocities smaller than x would be proportional to the third power of x, which means of the third power of M. The large increase of the resistance at low temperatures can be explained by the decrease of the mean velocity as compared with the critical velocity. Finally we remark, that as at--182 C. the resistance is increased nearly in the ratio of 1 to 3 in a magnetic, field of 6000, it hence seems that about 2/3 of the free particles lose their freedom in that case. At 100 C. on the contrary this number is very small, so that between these temperatures q shoul...


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Product Details
  • ISBN-13: 9781130799576
  • Publisher: Rarebooksclub.com
  • Publisher Imprint: Rarebooksclub.com
  • Height: 246 mm
  • No of Pages: 72
  • Spine Width: 4 mm
  • Width: 189 mm
  • ISBN-10: 1130799573
  • Publisher Date: 01 Mar 2012
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 145 gr


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Communications from the Kamerlingh Onnes Laboratory of the University of Leiden Volume 1; Nos. 49-60
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Communications from the Kamerlingh Onnes Laboratory of the University of Leiden Volume 1; Nos. 49-60
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