University of California Chronicle, Том 18University of California Press, 1916 |
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Стр. 83
... planet . The mystic sets out on a definite voyage in pursuit of a definite object . He knows not only what he seeks , but he knows the ways which lead away from and those which lead towards it . The mystic's preparation is , therefore ...
... planet . The mystic sets out on a definite voyage in pursuit of a definite object . He knows not only what he seeks , but he knows the ways which lead away from and those which lead towards it . The mystic's preparation is , therefore ...
Стр. 205
... planets , comets , meteors , et cetera ; and furthermore that it should hold beyond our solar system , among the stars surrounding us and forming our stellar system , and in fact in other stellar systems beyond our own , if there be ...
... planets , comets , meteors , et cetera ; and furthermore that it should hold beyond our solar system , among the stars surrounding us and forming our stellar system , and in fact in other stellar systems beyond our own , if there be ...
Стр. 206
... planets and other objects in our solar system , leaves no doubt of its general applicability in the sense in which it was pronounced by Newton ; and yet , if we should investigate how far the astronomer can go in establishing the ...
... planets and other objects in our solar system , leaves no doubt of its general applicability in the sense in which it was pronounced by Newton ; and yet , if we should investigate how far the astronomer can go in establishing the ...
Стр. 207
... planet is an ellipse with the sun at one of its foci . ( 3 ) The squares of the periods of the planets are to each other as the cubes of the semi - major axes of their respective orbits . An ellipse is a curve which may readily be drawn ...
... planet is an ellipse with the sun at one of its foci . ( 3 ) The squares of the periods of the planets are to each other as the cubes of the semi - major axes of their respective orbits . An ellipse is a curve which may readily be drawn ...
Стр. 208
... planet is the time it takes the planet to move completely around the ellipse from a given point back to the same point . Kepler's laws , then , signify that each planet of the solar system moves in an ellipse of its own , around the sun ...
... planet is the time it takes the planet to move completely around the ellipse from a given point back to the same point . Kepler's laws , then , signify that each planet of the solar system moves in an ellipse of its own , around the sun ...
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