A History of MechanicsRoutledge, 1955 - 671 стор. |
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Сторінка 537
... corresponds to n2 = 2. The series cor- responding to n2 = 1 , of which all the lines lie in the ultra - violet , had ... corresponding to ng 4. The other series lie in the far infra - red . 1 Nature , Vol . 93 , 1914 , p . 314 . = 2 Ann ...
... corresponds to n2 = 2. The series cor- responding to n2 = 1 , of which all the lines lie in the ultra - violet , had ... corresponding to ng 4. The other series lie in the far infra - red . 1 Nature , Vol . 93 , 1914 , p . 314 . = 2 Ann ...
Сторінка 602
... corresponding eigenfunction must strictly speaking be written as a proper differential " in the interval 4a of the ... corresponding operator . " 2 ) Principle of spectral decomposition . " Let there be a mechanical quantity and a ...
... corresponding eigenfunction must strictly speaking be written as a proper differential " in the interval 4a of the ... corresponding operator . " 2 ) Principle of spectral decomposition . " Let there be a mechanical quantity and a ...
Сторінка 619
... corresponding condition in ordinary mechanics by substituting the quantum square - bracket quantity for the Poisson ... corresponding to the eigen- value a , the state y = Uy % of the system at the time t is also an eigen- Ψα state of A ...
... corresponding condition in ordinary mechanics by substituting the quantum square - bracket quantity for the Poisson ... corresponding to the eigen- value a , the state y = Uy % of the system at the time t is also an eigen- Ψα state of A ...
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
acceleration Albert of Saxony Archimedes Aristotle assumed axis Bernoulli Blasius of Parma Carnot centre of gravity classical mechanics concept conservation considered coordinates d'Alembert Daniel Bernoulli deduced Descartes differential direction displacement distance Duhem dynamics Earth Einstein elastic electron energy equal equations equilibrium Euler experiment fall Fermat fluid function Galileo generalised given heavy body Huyghens hypothesis impact impetus inclined plane inertia instant Jean Bernoulli Kepler Lagrange least action Leibniz length Leonardo lever living forces Louis de Broglie mass Maupertuis means moving body natural necessary Newton observation obtained Oresme oscillation particle pendulum physical problem projectile proportional Proposition quantity of motion quantum mechanics ratio relation relative resistance rest Roberval rotation solution space sphere statics supposed surface theory trajectory travelled treatise uniformly variables velocity vertical wave weight XIIIth Century ди ду дх