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1. Mechanical Energy 2. Gravitational Energy 3. Kenetic Energy or 1. Static load 2. Dynamic load 3. Shear force Im not sure which one is right though =| i think the top ones are types of ENERGY...LOL but i dont know i just did this for fun.

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16y ago

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Object that are more massive accelerate faster on the moon than those that are less masive?

That statement is not entirely true. All objects, regardless of their mass, experience the same acceleration due to gravity on the Moon. However, more massive objects will have a greater force of gravity acting on them, which may give the impression that they are accelerating faster due to more force being applied.


Can you give some examples of constellation?

Sure! Some examples of constellations are Orion, Ursa Major, Scorpius, and Cassiopeia. These are patterns of stars that have been recognized and named by various cultures throughout history.


What is the magnitude of the gravitational force between the you and earth?

The magnitude of the gravitational force between you and Earth is approximately your mass multiplied by the acceleration due to gravity (9.8 m/s^2). This force keeps you anchored to the ground and is responsible for your weight.


What is a translucent give 3 objects?

A translucent object is something you can see through. Three examples of this is: windows, glasses and some drinking glasses


Why it is less dangerous to jump from a high wall onto loose earth than onto a concrete pavement?

Jumping onto loose earth provides a softer landing surface with more give, which can help cushion the impact and reduce the force exerted on the body. In contrast, landing on concrete pavement is a hard surface that does not absorb or dissipate the force of impact, increasing the risk of serious injuries like fractures or concussions.

Related Questions

What is an example of a force being applied but nothing happens give me a example?

An example of a force being applied but nothing happening is pushing a broken-down car that has its parking brake engaged. Despite applying a force to move the car, it remains stationary due to the resistance of the parking brake.


What does a force applied to a stationary object give the object?

A force applied to a stationary object can give the object acceleration, causing it to move.


Can you give some examples power from applied science?

Examples of power from applied science include depletion of trees and coal. Additional examples of applied science are invitro-fertilization and cloning.


What are the examples of basic and applied research?

give an example of a basic and applied research


What is the force applied over a period of time that is required to give a stationary object momentum called?

The force applied over a period of time to give a stationary object momentum is called impulse. Impulse is equal to the change in momentum of the object and can be calculated by multiplying the force applied by the time over which it is applied.


What are fixed and movable pulleys and give examples of each?

A fixed pulley is attached to a support and only changes the direction of the force applied. An example is a flagpole. A movable pulley is attached to the object being moved and reduces the amount of force needed. An example is a crane.


What does the force applied to a stationary object give to the object?

"Motion" or "Momentum"


What does a force applied to stationary object give the object?

motion or momentum Motion for A+


Give examples of derived quantities?

work,velocity,force and acceleration


Can you give some examples of strong force?

In physics, the "Strong Force" is the force that holds the nucleus of the atom together. It is the strongest force in nature.


Give two examples of products being exclusively distributed in the market along with the reason for selected examples?

Give two examples of products being exclusively distributed in the market along with the reason for selected examples?


How to find the magnitude of impulse in a given scenario?

To find the magnitude of impulse in a given scenario, you can multiply the force applied to an object by the time period over which the force is applied. This will give you the change in momentum of the object, which is equal to the impulse. The magnitude of impulse is a measure of how much the object's momentum changes due to the force applied to it.