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(II) Estimate how much farther a person can jump on the Moon as compared to the Earth if the takeoff speed and angle are the same. The acceleration due to gravity on the Moon is one-sixth what it is on Earth.
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On the Moon, the person can jump 6 times farther.
Physics 101 Mechanics
Kinematics in Two or Three Dimensions; Vectors
Motion Along a Straight Line
Motion in 2d or 3d
Newton's Laws of Motion
Rotation of Rigid Bodies
Dynamics of Rotational Motion
Equilibrium and Elasticity
Rutgers, The State University of New Jersey
University of Michigan - Ann Arbor
In physics, a rigid body is an object that is not deformed by the stress of external forces. The term "rigid body" is used in the context of classical mechanics, where it refers to a body that has no degrees of freedom and is completely described by its position and the forces applied to it. A rigid body is a special case of a solid body, and is one type of spatial body. The term "rigid body" is also used in the context of continuum mechanics, where it refers to a solid body that is deformed by external forces, but does not change in volume. In continuum mechanics, a rigid body is a continuous body that has no internal degrees of freedom. The term "rigid body" is also used in the context of quantum mechanics, where it refers to a body that cannot be squeezed into a smaller volume without changing its shape.
In physics, rotational dynamics is the study of the kinematics and kinetics of rotational motion, the motion of rigid bodies, and the about axes of the body. It can be divided into the study of torque and the study of angular velocity.
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estimate how much farther a person can jump on the moon as compared to the Earth. If the takeoff speed and angle are the same, The acceleration due to gravity on the moon is 1/6 of what it is on the earth. Okay, so for projectile emotion, we have that The range is Visa not squared sign of two ft or not over G. Okay, so we're actually looking at the Visa not squared sign of Tuesday tonight. This is equal to the range of the Earth G. Of the Earth, which is equal to the range of the moon. Give the moon. And since G. Of the moon is equal to 16 G of the Earth. If you're looking at the range, The acceleration due to gravity will cancel. And so the radi the range of the moon is six times that of the range of the Earth. So you can jump six times farther.
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