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When considering gravity acceleration and the force of acceleration, what must be true? • A. The mass of the body must be the same as the acceleration of the body. • B. The direction of the force and the direction of acceleration must be opposite of each other. • C. The direction of acceleration must be perpendicular to the direction of the force. O D. The direction of the force and the direction of acceleration must be the same as each other.
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Asked 61 days ago|11/21/2024 4:37:14 AM
Updated 61 days ago|11/21/2024 5:17:16 AM
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User: When considering gravity acceleration and the force of acceleration, what must be true? • A. The mass of the body must be the same as the acceleration of the body. • B. The direction of the force and the direction of acceleration must be opposite of each other. • C. The direction of acceleration must be perpendicular to the direction of the force. O D. The direction of the force and the direction of acceleration must be the same as each other.

Weegy: When considering gravity acceleration and the force of acceleration, direction of the force and the direction of acceleration must be the same as each other must be true.
Score 1

User: Which system of measurement has been standardized worldwide for scientific uses? • A. The English System O B. The Arabic System • C. The Systeme International • D. The French System

Weegy: The Systeme International has been standardized worldwide for scientific uses.

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User: If the centripetal and thus frictional force between the tires and the roadbed of a car moving in a circular path were reduced, what would happen?

Weegy: If the centripetal and thus frictional force between the tires and the roadbed of car moving in a circular path were reduced: The car would begin to move in the direction it was headed in a straight line.


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User: What's true about the elliptical path that the planets follow around the sun? • A. A vector can be drawn from the center of one planet to the center of an adjacent planet. O B. A line can be drawn from the planet to the sun that follows the same curve as the ellipse. • C. A line can be drawn from the planet to the sun that sweeps out equal areas in equal times. O D. A scalar can be measured from the angle that the planet travels relative to the sun's orbit.

Weegy: A line can be drawn from the planet to the sun that sweeps out equal areas in equal times. - is true about the elliptical path that the planets follow around the sun.
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User: If an astronaut has a mass of 80 kilograms on earth, what will the force of gravity on their body be on the moon?

Weegy: If an astronaut has a mass of 80 kilograms on earth, the force of gravity on their body on the moon is 128 N.
Score 1

User: When a person spins a bucket of water in a circle, the force acting on the bucket to keep the water inside is called • A. mass. O B. acceleration. O C. gravity. • D. centripetal force.

Weegy: When a person spins a bucket of water in a circle, the force acting on the bucket to keep the water inside is called centripetal force.
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User: The force of gravity acting on a child's mass on earth is 490 newtons. What's the child's mass?

Weegy: The force of gravity acting on a child's mass on earth is 490 newtons. The child's mass is 50kg.
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User: What's the velocity of an object that has a momentum of 4,000 kg-m/e and a mass of 116 kg? Round to the nearest hundredth.

Weegy: The velocity of an object that has a momentum of 4,000 kg-m/s and a mass of 115 kg is 34.78 m/s. p = mv, where p is momentum, m is mass and v is velocity. v = p/m v = 4,000 kg-m/s / 115 kg v = 34.78 m/s.
Score .89

User: Kepler modified Copernicus's model of the universe by proposing that the • A. planets follow an elliptical orbit every leap year. • B. planets have their own orbits around themselves as they orbit the sun. • C. planets follow a circular orbit around the sun. • D. paths of the planets follow an elliptical orbit around the sun.

Weegy: Kepler modified Copernicus's model of the universe by proposing that the paths of the planets follow an elliptical orbit around the sun.


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User: Which of the following accurately describes forces according to Newton's Third Law of Motion when a tennis racket hits a ball?

Question
Asked 61 days ago|11/21/2024 4:37:14 AM
Updated 61 days ago|11/21/2024 5:17:16 AM
2 Answers/Comments
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The racket applies force to the ball, but because the ball moves away, it doesn't apply force to the racket describes forces according to Newton's Third Law of Motion when a tennis racket hits a ball.
Added 61 days ago|11/21/2024 5:16:50 AM
This answer has been confirmed as correct and helpful.
3
The racket applies force to the ball, but because the ball moves away, it doesn't apply force to the racket describes forces according to Newton's Third Law of Motion when a tennis racket hits a ball.

Added 61 days ago|11/21/2024 5:17:16 AM
This answer has been confirmed as correct and helpful.
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Questions asked by the same visitor
Which of the following accurately describes the differences between the SI and English systems of measurement? • A. The two systems are used interchangeably in the scientific and technical communities. O B. The English system is more commonly used in Europe than in the United States. • C. The SI system, which is based on the metric system, has been more widely adopted than the English system, which is harder to use. • D. The English system is preferred for use in the scientific and technical ...
Question
Not Answered
Updated 61 days ago|11/21/2024 5:16:53 AM
2 Answers/Comments
The SI system, which is based on the metric system, has been more widely adopted than the English system, which is harder to use accurately describes the differences between the SI and English systems of measurement.
Added 61 days ago|11/21/2024 5:15:52 AM
This answer has been confirmed as correct and helpful.
The SI system, which is based on the metric system, has been more widely adopted than the English system, which is harder to use. -accurately describes the differences between the SI and English systems of measurement.

Added 61 days ago|11/21/2024 5:16:53 AM
This answer has been confirmed as correct and helpful.
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