He proclaimed that light would follow a curved path around the Sun, proving that space curves. To prove that space around the Sun is distorted, he suggested that a total eclipse of the Sun would show that the stars in the sky have moved. Science assumed that light was massless so that it couldn’t be attracted to the Sun’s gravity. This is an easy thing to imagine, but it’s not reality. Gravity became known as distorted space, where objects fall into depressions around large objects. This idea turned into the concept of the curvature of space. He wanted to add acceleration to the speed of objects to complete his theory of Relativity.Įinstein used geometry to model the path that objects follow as they are attracted to a large mass in space. In 1915 he tried to improve his theory by adding gravity and calling it General Relativity (GR), but he couldn’t find out the cause of gravity. Einstein proposed that acceleration is the same as gravity. Why does a massive object have a strong force of gravity? Speed has nothing to do with mass or time. At the end of his Special Relativity (SR), he wrote down the world's most famous equation. Many scientists don't believe his claims, but the results agree with his theory during non-relativistic speeds and in mind experiments. And at light speed, the mass is infinite, and time has stopped. His theory states that the faster an object moves, the slower the time, the more massive the mass, and the shorter (smaller) the object. Special Relativity came out in 1905, and Einstein said time is relative, but his theory doesn’t include gravity. Things are not what they seem when time and gravity are not treated properly.
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