Yes
Objects with less mass have less inertia, so they require less force to accelerate. This means that they can achieve higher acceleration rates compared to objects with more mass, which resist changes in motion due to their greater inertia.
Two factors that affect the speed of a moving object are the force applied to the object and the mass of the object. The greater the force applied, the faster the object will move. Similarly, objects with less mass will accelerate more quickly when a force is applied compared to objects with greater mass.
The difference is in the air resistance. Without air resistance, both will accelerate at the same rate. If there is air, in the case of the stone the ratio of surface area / weight is less than that of a feather. As a result, the stone will slow down less than the feather, and fall faster.
A particle of lesser mass experiences less inertia and therefore requires less force to accelerate. This means that it can accelerate more quickly compared to a particle of greater mass, which has more inertia and requires more force to achieve the same acceleration.
The difference is due to inertia. Inertia is the resistance to a change in motion (acceleration). A more massive object will have greater inertia, and therefore a greater resistance to a change in motion, resulting in a slower acceleration. A less massive object has lower inertia, and therefore less of a resistance to a change in motion, resulting in a faster acceleration.
If an object has more momentum, it has either a greater mass or a greater velocity. If an object has less inertia, it has less mass. So am object with less inertia will accelerate faster than one with greater momentum because of a greater mass, assuming the same force of acceleration is applied to both. However, if the greater momentum is due to greater velocity, not enough information has been provided to answer the question.
"Scuba scooter" is usually just slang for a diver propulsion vehicle (or DPV). It is basically like a torpedo with handles that a diver can ride. It enable the diver to go further, faster and using less air (because she gets less tired from swimming).
yes, it has less mass.
Whenna given force is applied ,an oobject with greater mass will accelerate less
The flippers help divers move at greater speeds and force and is less taxing on the diver.
Objects with less mass have less inertia, so they require less force to accelerate. This means that they can achieve higher acceleration rates compared to objects with more mass, which resist changes in motion due to their greater inertia.
From F=m*a, acceleration = force / mass Since mass is in the denominator, it would follow that the less mass there is, the greater the acceleration, force being equal. Although an average motorcycle has, perhaps, half the horsepower of a medium size car, it has MUCH less mass.
Two factors that affect the speed of a moving object are the force applied to the object and the mass of the object. The greater the force applied, the faster the object will move. Similarly, objects with less mass will accelerate more quickly when a force is applied compared to objects with greater mass.
The difference is in the air resistance. Without air resistance, both will accelerate at the same rate. If there is air, in the case of the stone the ratio of surface area / weight is less than that of a feather. As a result, the stone will slow down less than the feather, and fall faster.
A particle of lesser mass experiences less inertia and therefore requires less force to accelerate. This means that it can accelerate more quickly compared to a particle of greater mass, which has more inertia and requires more force to achieve the same acceleration.
The difference is due to inertia. Inertia is the resistance to a change in motion (acceleration). A more massive object will have greater inertia, and therefore a greater resistance to a change in motion, resulting in a slower acceleration. A less massive object has lower inertia, and therefore less of a resistance to a change in motion, resulting in a faster acceleration.
A dogs pulse is greater than a humans. The smaller the animal the faster the heartbeat. For example if you compare a cat to a mouse, the mouse has the faster heartbeat because of its size.