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Q1. How much force would you have to apply to just support the weight of an * average apple of mass 1.0 x 10^2 g?
Q1. How much force would you have to apply to just support the weight of an * average apple of mass 1.0 x 10^2 g? O (9.8 x 0.1) N [up] O (9.8 x 100) N [up] O (9.8 x 102) N [up] O (9.8 x 101) N [up] Q2. Your "weight" is properly defined as * O the amount of material of which you are composed O the gravitational force which Earth exerts on you O the gravitational force you exert on Earth O none of the above Q3. The action and reaction forces of Newton's third law * O act on the same object O act on two different objects that interact O cancel each other out like Fg and FN O all of the aboveQ4. Which of the following units is equivalent to a newton (N)?* O kg.m/s O g.cm/s O kg.s2/m O kg.m/s2 Q5. If we know an object is moving at constant velocity, what must we assume? * There is a zero net force acting on the object. The object is accelerating O There are no forces acting on the object. The object is losing mass. Q6. A heavy crate is pushed and let go across a rough surface. The force that is * ultimately responsible for the crate's motion is the O applied force O frictional force O gravitational force O normal forceQ7. An object is pushed horizontally at a constant velocity. What can correctly be * said about the forces acting on the object? The force(s) acting forward is/are greater than the force(s) acting backward. The sum of all forces has a value directed forward. The sum of all forces is zero. The forces acting on the object can be said to be "unbalanced." Q8. Knowing that a person with a mass of 50 kg has a weight of 80 N on the * Moon, the gravitational pull on the Moon is: 9.8 m/s2 O 9.8 N/kg 1.6 N/kg O third and forth options
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