gravitational constant - traducción al ruso
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gravitational constant - traducción al ruso

PHYSICAL CONSTANT RELATING THE GRAVITATIONAL FORCE BETWEEN OBJECTS TO THEIR MASS AND DISTANCE
Newton's constant; Universal gravitational constant; Gravitation constant; Gravitational field strength; Universal Gravitational Constant; Gravitational Constant; Newtonian constant; Gravity constant; Newton constant; Newtonian constant of gravitation; Gravity's constant; Constant of gravitation; Newtonian gravitational constant; Constant of gravity; Newton's Universal Gravitation Constant; Grav const; Cavendish constant; Gravitational coupling constant
  • Diagram of torsion balance used in the [[Cavendish experiment]] performed by [[Henry Cavendish]] in 1798, to measure G, with the help of a pulley, large balls hung from a frame were rotated into position next to the small balls.
  • Timeline of measurements and recommended values for ''G'' since 1900: values recommended based on a literature review are shown in red, individual torsion balance experiments in blue, other types of experiments in green.
  • ''G''}} is a key quantity in [[Newton's law of universal gravitation]].

gravitational constant         
гравитационная постоянная
gravitational constant         

строительное дело

гравитационная постоянная

constant of gravitation         

строительное дело

гравитационная постоянная

Definición

Лейе

Wikipedia

Gravitational constant

The gravitational constant (also known as the universal gravitational constant, the Newtonian constant of gravitation, or the Cavendish gravitational constant), denoted by the capital letter G, is an empirical physical constant involved in the calculation of gravitational effects in Sir Isaac Newton's law of universal gravitation and in Albert Einstein's theory of general relativity.

In Newton's law, it is the proportionality constant connecting the gravitational force between two bodies with the product of their masses and the inverse square of their distance. In the Einstein field equations, it quantifies the relation between the geometry of spacetime and the energy–momentum tensor (also referred to as the stress–energy tensor).

The measured value of the constant is known with some certainty to four significant digits. In SI units, its value is approximately 6.674×10−11 m3⋅kg−1⋅s−2.

The modern notation of Newton's law involving G was introduced in the 1890s by C. V. Boys. The first implicit measurement with an accuracy within about 1% is attributed to Henry Cavendish in a 1798 experiment.

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