What is the relation between gravitational constant g and acceleration due to gravity g A at height h above the surface of the earth and B on the surface of the earth?

We get g=RGM.
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What is the relationship between acceleration due to gravity g and gravitational constant g write the equation?

g=RGM.
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What is the acceleration due to gravity at a height h from the surface of the earth?

Hence, the acceleration due to the gravity of the body at height h is 7.35 ms-2.
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What is acceleration due to gravity B show relation between g & g?

The relationship between the acceleration due the gravity (g) and universal gravitational constant (G) may be represented by. (M and R are the mass and the radius of the earth respectively) A) G=gMR2. B)
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What is the relationship between g gravitational constant and small g acceleration due to gravity g GM RG g r2 g GM g2?

Therefore, the acceleration due to gravity (g) is given by = GM/r2.
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Relation between acceleration due to gravity 'g' and Gravitational constant 'G'



What is the relation between g and g?

Although there exists a formula to express the relation between g and G in physics, there is no correlation between acceleration due to gravity and universal gravitation constant, as the value of G is constant. The value of G is constant at any point in this universe, and G and g are not dependent on each other.
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What will be the acceleration due to gravity at height h if HR where R is radius?

Answer: g' = g/ (1 + h/R) square 2.
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What is the acceleration due to gravity at a height h radius of the earth from the surface of the earth g 9.8 m s2?

1 Answer. The acceleration due to gravity at a height h ( = radius of the earth) from the surface of the earth is 2.45 m/s2.
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What is the acceleration due to gravity at the Moon?

The Moon's surface gravity is about 1/6th as powerful or about 1.6 meters per second per second. The Moon's surface gravity is weaker because it is far less massive than Earth.
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What is the relationship between acceleration due to gravity of any planets or satellites with their radius?

The acceleration due to gravity g is therefore proportional to the radius R. Explanation: For two satellites of equal mass in circular orbits of radii R1 and R2, The above equation is merely Kepler's third law as applied to satellites in circular orbits.
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Which of the two g universal gravitational constant and g acceleration due to gravity is different on the earth and on the moon why?

Acceleration gravity (g)

Universal gravitational constant is a constant value at any place in the universe. The nature of the acceleration due to gravity varies from place to place. The value of acceleration due to gravity of the earth is 9.8 m/s2 and moon is equal to 1.6 m/s2.
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What do you mean by acceleration due to gravity derive relation between acceleration due to gravity on earth mass and radius of Earth?

As gravitational constant G and mass of earth M are always constant, so the value of acceleration due to gravity g is constant as long as the radius of earth remains constant. At the surface of earth also, the value of g is not constant. ( g∝r21) . At the poles, radius of earth is minimum, hence the g is maximum.
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What would be the value of acceleration due to gravity and universal gravitational constant at the highest point in its journey?

The correct answer is 6.6734 × 10-11N m2kg-2.
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What will be the acceleration due to gravity at height h'if h >> R where R is radius of Earth and g is acceleration due to gravity on the surface of?

∴h=(2 −1)R.
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What is the acceleration due to gravity at a height R 5 from the surface of the earth radius R )?

Acceleration of the body is 0.0042 m/s² . Thus,acceleration due to gravity at a height R/5 from the surface of earth is 6.8m/s².
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At what height h from the earth surface acceleration due to gravity becomes half as that of acceleration due to gravity on the surface of earth R radius of Earth?

At what height 'h' from the earth surface, acceleration due to gravity becomes half as that of acceleration due to gravity on the surface of earth [R = Radius of earth] 2 ose answer: h=R 2 4.
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What is the relation between g and g Class 11?

Hint: G is the force between two bodies of unit mass separated by distance r. G is known as a universal gravitational constant. g is the acceleration produced in a body falling under the action of gravitational pull of the earth.
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What is the relation between capital g and small g Class 9th?

Captain G:-It is the global constant used in computing the force of attraction between any two masses. Small g:-It is the acceleration near the surface of the earth due to attraction between the mass of the earth and objects attracted to the earth they are close to the earth's surface.
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What is the relationship between g and MG write this in two ways?

1 gram consists of 1000 mg. So if we want to convert gram to mg, we multiply the amount of gram with 1000. So for example, 5 grams gives 5000 mg.
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What is the formula of capital g?

G = 6.67408 × 10-11 N m2 Kg-2

The value of gravitational constant on the moon or on mars or at any part of the universe remains unchanged making it an invariant entity.
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