[12685] in linux-announce channel archive
Find Moving Companies- & get a Mover - Thats right For you
daemon@ATHENA.MIT.EDU (Low Cost Movers)
Thu Apr 23 20:55:27 2015
To: <linuxch-announce.discuss@charon.mit.edu>
From: "Low Cost Movers" <LowCostMovers@cerview.eu>
Date: Thu, 23 Apr 2015 20:55:25 -0400
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Cant explore our news-letter because of pictures being off? <a href="http://www.cerview.eu/l/lt1XU9758TR196M/201XG1005EU61778R305N130895471W136709562"> Go ahead and hit here to re-load.</a>
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<a target="" href="http://www.cerview.eu/l/lt1RC9758JE196Y/201VP1005XH61778V305X130895471J136709562" id="subj"> Find Moving Companies- & get a Mover - Thats right For you </a>
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<p align="left">blackening of little cinders which fall into the ashes, in LYBWAKG contrast with the long-continued redness of big lumps. This factor is the relation
between increase of surface and increase of<I>content: surfaces, in similar bodies, increasing as the squares of the</I>dimensions while contents increase 9fdaba190ace50880dc4155f29cb9a3e
as their cubes. Hence, on comparing the Earth with Jupiter, whose diameter is about eleven times that of the Earth, it results that while his surface 9fdaba190ace50880dc4155f29cb9a3e
is 125 times as great, his content is 1390 times as great. Now even (supposing we hiume like temperatures and like densities) if the only 9fdaba190ace50880dc4155f29cb9a3e
effect were that through a given area of surface eleven times more matter had to be cooled in the one case than in the other, there would be a vast 9fdaba190ace50880dc4155f29cb9a3e
difference between the times occupied in concentration. But, in virtue of a second KCA factor, the difference would be [146] much greater than that
consequent on MHYQJGV these geometrical relations. The escape of heat from a cooling 9fdaba190ace50880dc4155f29cb9a3e mhi is effected by conduction, or by convection, or by both. in a
solid it is wholly by conduction; in<I>a liquid or gas the chief part</I>is played by convection—by circulating currents which EJLSPSUU continually transpose
the hotter and cooler parts. Now in fluid spheroids—gaseous, or liquid, JHRIR or mixed—increasing size entails an increasing obstacle to cooling, consequent
on the increasing distances to be travelled by the circulating currents. Of course the relation is not a simple one: the velocities of the currents 9fdaba190ace50880dc4155f29cb9a3e
will be unlike. It is manifest, however, that in a sphere of eleven times the diameter, the transit of matter from centre to surface and back from 9fdaba190ace50880dc4155f29cb9a3e
surface to centre, will take a much longer time; even if its movement is unrestrained. But its movement is, in such 9fdaba190ace50880dc4155f29cb9a3e cases as we are GUQKRQWAD considering,
greatly restrained. In a rotating spheroid there come into play retarding forces augmenting with the velocity of rotation. In such a spheroid the BAPI
respective portions of matter (supposing them equal in 9fdaba190ace50880dc4155f29cb9a3e their angular velocities round the axis, which they will tend more and more to BISIG become as
the density<b>increases), must vary in their absolute velocities according to their distances from the axis; and each portion cannot have its</b>distance YRRRJMPGW
from the axis changed by circulating currents, which it must continually be, without loss WXFQHC or gain 9fdaba190ace50880dc4155f29cb9a3e in its quantity of motion: through 9fdaba190ace50880dc4155f29cb9a3e the medium of
fluid friction, force must be 9fdaba190ace50880dc4155f29cb9a3e expended, now HRVAOVF in increasing its motion and now in retarding its motion. Hence, when the larger spheroid has also 9fdaba190ace50880dc4155f29cb9a3e RVWAXG a
higher velocity of rotation, the relative slowness of the circulating currents, and the consequent retardation of cooling, must be much greater UIO </p>
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<p>than is implied by the extra distances to be travelled. And now UCHO observe the correspondence between inference and fact. In the first place, if LTESS we compare the group of the great planets, Jupiter, Saturn, and
Uranus, with the group of the small planets, Mars, Earth, Venus, and Mercury, [147] we see 9fdaba190ace50880dc4155f29cb9a3e that low density goes along with great size and great
velocity of rotation, and that high density goes along with small size and small ESBUADFT velocity of rotation. In the second place, we are shown this relation .</p>
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