The simple answer is that Special Relativity can be described with simple algebraic processes. General Relativity involves much more complex mathematics, including tensor calculus, for its mathematical description.
Special relativity deals with the physics of objects moving at constant speeds, while general relativity includes the effects of gravity and acceleration on objects in motion.
General relativity is a theory of gravity that describes how massive objects like planets and stars curve spacetime, while special relativity deals with the relationship between space and time for objects moving at constant speeds.
Please visit the following sites for details explaining the difference between the two: http://archive.ncsa.illinois.edu/Cyberia/NumRel/GenRelativity.html http://archive.ncsa.illinois.edu/Cyberia/NumRel/SpecialRel.html
General relativity and special relativity are both theories proposed by Albert Einstein to explain the behavior of objects in space and time. Special relativity deals with the relationship between space and time in the absence of gravity, while general relativity extends this to include the effects of gravity on the curvature of spacetime. In essence, special relativity focuses on objects moving at constant speeds, while general relativity considers the effects of gravity on the motion of objects.
General relativity and special relativity are both theories developed by Albert Einstein to explain the nature of space, time, and gravity. The key difference between the two is that special relativity deals with the behavior of objects in uniform motion, while general relativity extends this to include the effects of gravity on objects in motion. Special relativity is based on the principle of the constancy of the speed of light in a vacuum, while general relativity introduces the concept of curved spacetime to explain the force of gravity.
General relativity is a theory of gravity that describes how massive objects like planets and stars curve spacetime, while special relativity deals with the relationship between space and time for objects moving at constant speeds. In general relativity, gravity is seen as a curvature of spacetime caused by mass, while special relativity focuses on the effects of motion on space and time.
Special relativity, developed by Albert Einstein in 1905, deals with the behavior of objects in uniform motion and the concept of spacetime. General relativity, developed by Einstein in 1915, extends special relativity to include gravity and the curvature of spacetime caused by mass and energy. In essence, special relativity focuses on objects in motion, while general relativity incorporates gravity and the curvature of spacetime.
Mathematicians are particularly interested in the mathematical principles of differential geometry and tensor calculus that underlie general relativity. These principles help describe how gravity works in the universe and how spacetime is curved by mass and energy.
In the context of general relativity, the stress-energy tensor describes the distribution of energy and momentum in spacetime. The scalar field, on the other hand, is a mathematical concept that represents a scalar quantity at every point in spacetime. The relationship between the stress-energy tensor and the scalar field lies in how the scalar field can contribute to the stress-energy tensor, influencing the curvature of spacetime and the gravitational field in general relativity.
Albert Einstein developed the theories of special and general relativity. Special relativity, published in 1905, deals with the relationship between space and time. General relativity, published in 1915, extends these ideas to include gravity and the curvature of spacetime.
Albert Einstein worked out the Theory of General Relativity between 1905 and 1919. General Relativity is, as the name suggests, a more generalized extension of Special Relativity, which described the relationship between motion, space, and time, but did not include the effects of gravitation. General Relativity includes Gravitation, but is thought to be incomplete because its rules apply only to the macro universe, and fall apart at the subatomic level.
Special relativity deals with the behavior of objects in uniform motion, while general relativity includes the effects of gravity on objects in motion. Special relativity is based on the principle of the constancy of the speed of light, while general relativity incorporates the concept of curved spacetime due to the presence of mass and energy.