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  • the value of gravitational constant G on earth is 6. 67×10-11 . . . - Brainly
    The gravitational constant (also known as the universal gravitational constant, the Newtonian constant of gravitation, or the Cavendish gravitational constant) at denoted by the letter G According to the statement, we can find out G is a universal constant ∴ Its value on the surface of the moon is also 6 67 × 10−11N m2kg−2
  • The value of universal gravitational constant G=6. 67*10-11 N m²Kg-2.
    To express the value of the universal gravitational constant G = 6 67 x 10^-11 N m^2 kg^-2 in units of g^-1 cm^3 s^-2, we need to convert the given units to the desired units
  • The value of gravitational constant is G= 6. 67x10^-11 Nm2 kg2 . . . - Brainly
    The value of gravitational constant in the new system of units is 6 67 × 10^-11 kg^-1 m^3 s^-2 (α β^2) (γ^2) To find the value of the gravitational constant in the new system of units, we need to express the units of mass, length, and time in terms of their SI units, and then substitute these values in the formula for G
  • derive expression for force of attraction between two bodies and then . . .
    Thus, the gravitational constant G is numerically equal to the force of gravitation which exists between two bodies of unit masses kept at a unit distance from each other
  • Why G is called universal gravitational constant - Brainly. in
    ANSWER: G is called the universal gravitational constant because its value is constant and doesn't change from place to place its value was found by HENRY CAVENDISH which is 6 673 × 10^-11 Nm^2 kg^2 this law is universal in the sense that it is applicable to all the bodies whether the bodies are big or small whether they are celestial or terrestrial
  • Why is G called universal gravitational constant? - Brainly
    Answer: G is called the universal gravitational constant because it is a constant value that represents the strength of gravitational attraction between two objects, regardless of their mass, size, shape, or composition This constant applies universally to all objects in the universe, from the smallest particles to the largest galaxies
  • Explain the statement that the value of G is 6. 67 x 10-11 N m² kg
    Answer: G is known as universal Gravitational constant It is constant famously known for its application in Newton's law of gravitation Given statement means that 6 67×10^-11 Nm2 kg2 is magnitude of g We use this value to calculate gravitional force b w two bodies
  • The gravitational constant depends upon - Brainly. in
    Gravitational force Explanation: The law of gravitation states that the force acting between two masses depends directly on the product of their masses and inversely proportional to the square of their distance between them It is given by : F = G r2m1m2 G is the universal gravitational constant The value of G is independent of any factor
  • A satellite is orbiting around a planet. It Orbital velocity (vo) is . . .
    The orbital velocity (vo) of a satellite orbiting a planet is determined by two factors: A) The radius of the orbit (R) B) The mass of the planet (M) According to Kepler's laws of planetary motion, the orbital velocity of a satellite (vo) can be calculated as: vo = sqrt (GM R) where G is the universal gravitational constant, M is the mass of the planet, and R is the radius of the orbit This
  • A planet moves around the sun in nearly circular orbit. Its period . . .
    A planet moves around the sun in nearly circular orbit Its period revolution 'T' depends upon: (i)radius 'r' of orbit (ii)mass 'M' of the sun and (iii)the gravitational constant G Show dimensionally that T^2 is directly proportional to r^3





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