A History of MechanicsRoutledge & Paul, 1957 - 671 стор. |
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Сторінка 240
... given effect and the quantities of matter . As an example of Euler's analysis , we shall give his treatment of the following problem . 66 ― Proposition XIV . — Problem . — Being given the effect of an absolute power on a particle at ...
... given effect and the quantities of matter . As an example of Euler's analysis , we shall give his treatment of the following problem . 66 ― Proposition XIV . — Problem . — Being given the effect of an absolute power on a particle at ...
Сторінка 365
... given system , the assembly of levers will be carried along in the displacement of the given system , and the points q and q , r and r , . . . of the two systems will not separate . ... Therefore it can be supposed that there are ...
... given system , the assembly of levers will be carried along in the displacement of the given system , and the points q and q , r and r , . . . of the two systems will not separate . ... Therefore it can be supposed that there are ...
Сторінка 592
... given forces and starts from given initial conditions . Therefore , if perturbation is excluded , the state continues to exist indefinitely . The notion of perturbation is itself relative , for the perturbing cause can be incorporated ...
... given forces and starts from given initial conditions . Therefore , if perturbation is excluded , the state continues to exist indefinitely . The notion of perturbation is itself relative , for the perturbing cause can be incorporated ...
Зміст
Nicholas Copernicus 14721543 His system of the world | 5 |
The priority of Herman and Euler in the matter of dAlemberts | 6 |
Transformation of Maxwells equations including convection | 11 |
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Загальні терміни та фрази
able acceleration according action appears applied assumed become body called carried cause centre of gravity Century classical complete concept concerned condition connection considered constant continuous corresponding Descartes determined direction distance dynamics Earth effect energy equal equations equilibrium Euler example existence experiment expressed fact fall field fluid function Galileo given hand Huyghens hypothesis ideas impact impetus inclined increases Lagrange length lever light living forces mass matter means measure mechanics motion moving natural necessary observation obtained original particle physical plane position possible principle problem produced proportional Proposition quantity quantum quantum mechanics reference relation relative remains remarked represented resistance respect rest result sense shows simple solution space special relativity starts statics supposed surface taken theory travelled true velocity wave weight World writes