How do you find the force of gravity?

Answers

Answer 1
1Define the equation for the force of gravity that attracts an object, Fgrav = (Gm1m2)/d2
2. Use the proper metric units.
3. Determine the mass of the object in question.
4. Measure the distance between the two objects
5. Solve the equation



Answer 2
Final answer:

To find the force of gravity, identify the two masses and the distance between them, draw a free-body diagram, and apply Newton's second law of motion or Newton's universal law of gravitation.

Explanation:

To find the force of gravity, you need to identify the two masses involved and the distance between their centers of mass. Following this, you can draw a free-body diagram representing the forces acting on each mass.

Newton's second law of motion is then applied to each mass to determine how it will move. This is done using the equation F = ma, where F is the force, m is the mass and a is the acceleration due to gravity.

You may also use Newton's universal law of gravitation, represented by the equation F = GmM, where F is the gravitational force, G is the gravitational constant, and m and M are the masses of the two objects. Bear in mind that the force of gravity decreases with increasing distance between the objects in proportion to the inverse square of their separation.

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Related Questions

A pie chart is commonly used to present:
budgets
temperature
rainfall
population growth

Answers

If that's a true or false, true.

I would've thought all of the above. But if its one answer then go with budgets.

A battleship steams due east at 24 km/h. a submarine 4.0km away fires a torpedo that has a speed of 50 km/h. if the bearing of the ship as seen from the submarine is 20 degrees north of east... (
a. in what direction should the torpedo be fired to hit the ship? (
b. how long will it take the torpedo to reach the battleship?

Answers

Final answer:

The direction in which the torpedo should be fired, as well as the time it will take to reach the battleship, requires solving problems involving relative velocity and kinematics, common in high school physics.

Explanation:

The question is related to the direction and time taken for a torpedo to hit a moving battleship which involves relative velocity and kinematics, a typical topic in high school physics. The submarine should fire the torpedo at an angle calculated using the relative speed and direction of both the torpedo and the battleship to ensure they intersect at a point. The time taken by the torpedo to reach the battleship can then be determined using the relative speeds and the initial distance between them.

How does frequency affect wavelength?

Answers

increase in wave frequency causes a decrease in wavelength while a decrease frequency causes a increase in wavelength :) hope i helped
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