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1 6 points Match each word with the correction definition. Vector Equilibrium Force Mass Weight Net Force 2 1 point What is the correct formula

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1 6 points Match each word with the correction definition. Vector Equilibrium Force Mass Weight Net Force 2 1 point What is the correct formula to calculate a force? O F = ma*2 O F = (1/2)mv*2 O F = (1/2)ma O F = ma 3 1 point What is the correct formula to calculate weight? O W = (1/2)mg O W = Fm O W = (1/2)mg*2 W= mg 4 3 points Match each of Newton's Laws of Motion which the correct statement. Newton's 2nd Law of Motion Newton's 1st Lew of Motion An object at rest remains at rest and an object in motion Newton's 3rd Law of MotionThe amount of matter an object consists of or a measure of inertia (resistance to change in motion). A measure of the tendency of a force to cause a change in rotation. A push or a pull. The ability of an object to be stretched or compressed and return to its original shape. The state an object is in when the net force on it is zero. The distance from the rotational axis to where the force is applied.A quantity that has magnitude and direction. The magnitude of the gravitational force. The attractive force that exists between all forms of matter. The total force exerted on an object.In the absence of nuclear processes (such as fusion, fission, particle annihilation & creation) the total amount of mass remains constant. In the absence of nuclear processes (such as fusion, fission, particle annihilation & creation) the total amount of energy remains constant. In the absence of nuclear processes (such as fusion, fission, particle annihilation & creation) the total amount of mass remains constant An object at rest remains at rest and an object in motion remains in motion at a constant velocity (same speed in a straight line) unless acted upon by a net external force.If Object A exerts a force on Object B. Object B will exert the same magnitude force in the opposite direction back on Object A. The total amount of momentum remains constant. Force causes acceleration. The acceleration of an object is directly proportional to the net force acting on it and in the same direction as the net force and inversely proportional to the mass of the object

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