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Acceleration in meters per second squared is determined by dividing Force by mass: a = F/m

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11y ago

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What is the acceleration of an object with a mass of 60 kg?

The acceleration of an object depends on the force acting on it. If a force is applied, the acceleration can be calculated using Newton's second law: acceleration = force / mass. More information about the force acting on the object is needed to determine its acceleration.


How can one determine the friction force when given the mass and acceleration of an object?

To determine the friction force when given the mass and acceleration of an object, you can use the formula: friction force mass x acceleration. This formula helps calculate the force resisting the motion of the object due to friction.


What factors determine how much an object accelerates when a force is applied to it?

The factors that determine how much an object accelerates when a force is applied to it are the magnitude of the force applied and the mass of the object. The greater the force applied, the greater the acceleration of the object. Conversely, the greater the mass of the object, the smaller the acceleration for a given force.


If you know the objects mass and acceleration you can determine the net force being exerted on the object?

True


How can one determine the net force acting on an object without knowing its acceleration?

To determine the net force acting on an object without knowing its acceleration, you can use Newton's second law of motion. The net force can be calculated by multiplying the object's mass by its acceleration. This formula is expressed as F ma, where F is the net force, m is the mass of the object, and a is the acceleration. By rearranging the formula, you can find the net force even if the acceleration is unknown.


How can one determine the force exerted by an object based on its velocity?

The force exerted by an object can be determined based on its velocity by using the formula: force mass x acceleration. When an object is moving at a certain velocity, its acceleration can be calculated using the change in velocity over time. By multiplying the mass of the object by its acceleration, one can determine the force exerted.


How can one determine the applied force on an object when acceleration is not present?

To determine the applied force on an object when acceleration is not present, you can use Newton's first law of motion, which states that an object at rest will remain at rest unless acted upon by an external force. By measuring the object's mass and the net force acting on it, you can calculate the applied force using the formula: Force mass x acceleration.


If you know an object’s mass and acceleration you can determine the net force being exerted on the object?

True!. Sierra Ambrosio"))


How can one determine the total force acting on an object using the keyword "how to find total force"?

To determine the total force acting on an object, you can use the formula: Total Force Mass x Acceleration. This formula combines the object's mass and the acceleration it experiences to calculate the overall force acting on it.


How does Newton's second law explain the relationship between the force applied to an object and its resulting acceleration?

Newton's second law states that the acceleration of an object is directly proportional to the force applied to it and inversely proportional to its mass. In simpler terms, the greater the force applied to an object, the greater its acceleration will be, and the heavier the object, the smaller its acceleration will be for the same force.


How do you calculate the friction force when given the mass and acceleration of an object?

To calculate the friction force on an object, you can use the formula: Friction force mass x acceleration. This formula helps determine the force resisting the object's motion due to friction.


Factors that determine a force?

The factors that determine a force include the mass of an object and the acceleration applied to it. Force is calculated as the product of mass and acceleration (F=ma). The direction in which the force is applied is also an important factor.