A Bowling ball and a piece of paper will fall at the same rate on the Moon.
This is because gravity pulls at a constant rate. The force of gravity depends on the mass of the Moon, which is constant, and not on the mass of each object falling.
On Earth, the piece of paper will fall much slower than the bowling ball because of air resistance. Because there is no air on the Moon, both objects will fall at the same rate.
because there if speed is constant than ball never come back to earth hence speed of ball is not constant
The bowling ball at rest is in equilibrium because there is no net force acting on it. The ball rolling down the lane at a constant speed is also in equilibrium because the forces of friction and gravity are balanced, allowing it to maintain a constant speed.
If both balls have the same momentum, then the speed of the golf ball will be faster compared to the speed of the bowling ball. This is because the golf ball has less mass than the bowling ball, so it needs to move at a higher speed to have the same momentum.
the golf ball stopped but the bowling ball keep rolling due to their different size and weight.as we know bowling ball is bigger in size as well as weight so it will face more fictin force and stops early as compare to golf ball when they collide and at the same time bowling ball poshes the golf ball back.so the golf ball stops and the golf ball keeps rolling.
The bowling ball has more momentum because momentum is directly proportional to an object's mass and velocity. Since the two balls are moving at the same speed, the greater mass of the bowling ball results in it having more momentum.
The bowling ball is harder to stop because it has a greater mass, and therefore a greater momentum. But the answer is that the bowling ball has a greater mass.
Rolled? Thrown? How heavy of a bowling ball? And the speed of a ball depends on how hard a person throws it. It is hard to answer such a general question.
... What is the speed of the ball? Distance = 17.5 m Time = 2.6 sec Speed (of sound) = 340 m/sec Speed (of ball) = ? Typically Speed = Distance/time (which means 17.5/2.6. But here we also have to calculate the speed of the sound of the ball traveling when the ball hits the pins till it reaches the ears of the bowler) Time (of sound) = Distance/Speed (of sound) = 17.5/340 = 0.0515 sec Time (of ball) = 2.6 - 0.0515 =2.5485 sec Speed (of ball) = Distance/Time (of ball) = 17.5/2.5484 = 6.87 m/sec
there is more momentum and it depends on what your arm swing speed is when you throw a bowling ball because on your follow through there is more momentum going with a heiver ball rather than a lighter ball
a bowling ball
No. Speed and force cause a bowling ball to roll down a lane. Friction may cause a bowling ball to change course on a lane though, and also slow it down.
A bowling ball since it has more mass. However, both the ping pong ball and the bowling ball are subjected to the same acceleration due to gravity, specifically 9.82 m s-2 and, neglecting air resistance, would fall at the same rate of speed.