not counting variables such as wind resistance and such, no
The average speed of a ball is influenced by factors such as the initial velocity at which it is thrown or hit, air resistance, gravity, and surface friction. Additionally, factors like the mass and size of the ball can also affect its speed.
The terminal velocity of a bouncy ball depends on its size, weight, shape, and the air resistance it encounters during its fall. Generally, the terminal velocity of a bouncy ball is low compared to heavier objects due to its low mass and streamlined shape.
The size of the ball on the plunger does not affect the amplitude of the waves. The amplitude of the waves is determined by the energy put into creating the waves and the properties of the medium through which the waves travel. The size of the ball may affect other characteristics of the waves, such as frequency or wavelength, but not the amplitude.
A larger ball size on the plunger will generally result in greater displacement of the plunger when creating waves, leading to higher amplitude waves. Conversely, a smaller ball size will result in smaller displacements and lower amplitude waves.
The distance a ball rolls on tile would depend on factors such as the initial velocity, surface friction, and angle of inclination. In general, the smoother the tile surface and the greater the initial velocity, the farther the ball will roll.
Yes , the affect of the ball does matter of how far it goes.
your ball size is affected by puberty but your ball size doesnt affect puberty. they will get a lot bigger
how does the size of a ball on a plunger affect the amplitude of a wave
The average speed of a ball is influenced by factors such as the initial velocity at which it is thrown or hit, air resistance, gravity, and surface friction. Additionally, factors like the mass and size of the ball can also affect its speed.
a ball can never bounce over the height from which it was bounced unless u aplly a force. The factors that affect the bounce of a dropped ball include the height from which it is dropped; the force applied to it, if any, when dropped; the acceleration of gravity, which is different depending upon what planet you're one; the elasticity of the ball; the density of the atmosphere, which affects "air resistance"; and the rigidity and elasticity of the surface on which the ball bounces. weight also affect the bounce height.
The terminal velocity of a falling object depends upon its aerodynamics (which is to say, its shape) rather than its size and mass.
The terminal velocity of a bouncy ball depends on its size, weight, shape, and the air resistance it encounters during its fall. Generally, the terminal velocity of a bouncy ball is low compared to heavier objects due to its low mass and streamlined shape.
The size of the ball on the plunger does not affect the amplitude of the waves. The amplitude of the waves is determined by the energy put into creating the waves and the properties of the medium through which the waves travel. The size of the ball may affect other characteristics of the waves, such as frequency or wavelength, but not the amplitude.
The size of a ball does affect how fast it rolls. Surface also play a major role in how fast a ball will move.
A larger ball size on the plunger will generally result in greater displacement of the plunger when creating waves, leading to higher amplitude waves. Conversely, a smaller ball size will result in smaller displacements and lower amplitude waves.
The distance a ball rolls on tile would depend on factors such as the initial velocity, surface friction, and angle of inclination. In general, the smoother the tile surface and the greater the initial velocity, the farther the ball will roll.
The size of a ball does not directly affect the time it takes to fall in the absence of air resistance. In a vacuum, all objects would fall at the same rate regardless of size. This is known as the principle of acceleration due to gravity.