The acceleration due to gravity, g, is constant at sea level on the Earth\\\'s s
ID: 1359462 • Letter: T
Question
The acceleration due to gravity, g, is constant at sea level on the Earth's surface. However, the acceleration decreases as an object moves away from the surface due to the increase in distance from the center of the Earth. Derive an expression for the acceleration due to gravity at a distance h above the surface of the Earth, gh. Express the equation in terms of the radius of the Earth RE, g and h.
gh=
A 74.35 kg hiker has ascended to a height of 1.880 × 103 m in the process of climbing Mt. Washington. By what percent has the hiker's weight changed by climbing to this elevation? Use g = 9.807 m/s2 and RE = 6.371 × 106 m. (Hint: Keep 4 significant figures in your weight calculation to find the percent difference.)
%W change=
Explanation / Answer
we know that gorce of gravity between object of mass m and earth = G *m * Me / Re
where Me = mass of earth
Re = radius of earth
G = gravitation constant
then force at highr h above the earth surface = G * m * Me / (Re + h)
force = mass * acceleration
so,
mass * acceleration = G * m * Me / (Re + h)
m * acceleration = G * m * Me / (Re + h)
acceleration = G * Me / (Re + h)
acceleration gh = G * Me / (Re + h)
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