When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
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When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
Newton’s Principle of Gravitation was the fundamental paradigm for physics and was universally accepted.
Newton held that gravity is common and launched the
Newton held that gravity is common and launched the

When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.

When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
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When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.
When Einstein applied his principle to gravitational fields, he derived the "curved space-time continuum" which depicts the dimensions of area and time as a two-dimensional surface where massive objects create valleys and dips in the surface.

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