A constant force applied to A causes A to accelerate at 7 m/s2. The same force applied to B causes an acceleration of 1
Posted: Fri Jun 17, 2022 6:18 am
A constant force applied to A causes A to accelerate at 7 m/s2.The same force applied to B causes an acceleration of 1 m/s2.Applied to C, it causes an acceleration of 8 m/s2.
A constant force applied to A causes A to accelerate at 7 m/s². The same force applied to B causes an acceleration of 1 m/s². Applied to C, it causes an acceleration of 8 m/s². object A object C a smaller mass always leads to a greater acceleration than a greater mass a greater mass always leads to a greater acceleration than a smaller mass mass is inversely proportional to acceleration mass is proportional to acceleration Since the same force acts on the objects, object B has the largest mass because
A constant force applied to A causes A to accelerate at 7 m/s². The same force applied to B causes an acceleration of 1 m/s². Applied to C, it causes an acceleration of 8 m/s². object A object B object C ‒‒‒‒‒‒‒‒‒‒ a smaller mass always leads to a greater acceleration than a greater mass a greater mass always leads to a greater acceleration than a smaller mass mass is inversely proportional to acceleration mass is proportional to acceleration Since the same force acts on the objects, has the smallest mass because
A constant force applied to A causes A to accelerate at 7 m/s². The same force applied to B causes an acceleration of 1 m/s². Applied to C, it causes an acceleration of 8 m/s². mass is inversely proportional to acceleration mass is proportional to acceleration Request Answer MA mB ΠΫΠΙ ΑΣΦ Submit Part C What is the ratio MA MB Submit of the mass of A to the mass of B? ? Request Answer
A constant force applied to A causes A to accelerate at 7 m/s². The same force applied to B causes an acceleration of 1 m/s². Applied to C, it causes an acceleration of 8 m/s². object A object C a smaller mass always leads to a greater acceleration than a greater mass a greater mass always leads to a greater acceleration than a smaller mass mass is inversely proportional to acceleration mass is proportional to acceleration Since the same force acts on the objects, object B has the largest mass because
A constant force applied to A causes A to accelerate at 7 m/s². The same force applied to B causes an acceleration of 1 m/s². Applied to C, it causes an acceleration of 8 m/s². object A object B object C ‒‒‒‒‒‒‒‒‒‒ a smaller mass always leads to a greater acceleration than a greater mass a greater mass always leads to a greater acceleration than a smaller mass mass is inversely proportional to acceleration mass is proportional to acceleration Since the same force acts on the objects, has the smallest mass because
A constant force applied to A causes A to accelerate at 7 m/s². The same force applied to B causes an acceleration of 1 m/s². Applied to C, it causes an acceleration of 8 m/s². mass is inversely proportional to acceleration mass is proportional to acceleration Request Answer MA mB ΠΫΠΙ ΑΣΦ Submit Part C What is the ratio MA MB Submit of the mass of A to the mass of B? ? Request Answer