and denote the acceleration due to gravity 24. 9. on the surface of the earth and another planet whose mass and radius are twice that of the earth. Then (1) g, - 9, (2) g,-9/2 (3) g, 29, (4) 9, = %3D 25. The acceleration due to gravity (1) is constant (2) increases on golng below the earth's surface (3) is maximum at equator (4) is zero at the centre of earth 26. Suitable units for the gravitational constant G are (1) kg-m/s (2) m/s (3) kg-m/s (4) m/(kg-s)
and denote the acceleration due to gravity 24. 9. on the surface of the earth and another planet whose mass and radius are twice that of the earth. Then (1) g, - 9, (2) g,-9/2 (3) g, 29, (4) 9, = %3D 25. The acceleration due to gravity (1) is constant (2) increases on golng below the earth's surface (3) is maximum at equator (4) is zero at the centre of earth 26. Suitable units for the gravitational constant G are (1) kg-m/s (2) m/s (3) kg-m/s (4) m/(kg-s)
Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter10: Motion In A Noninertial Reference Frame
Section: Chapter Questions
Problem 10.20P: Calculate the effective gravitational field vector g at Earths surface at the poles and the equator....
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