So the motion is accelerated. By Newton's second law, a resultant force [B1] must be acting on it. Since the change in velocity is directed towards the centre of the circle [B1], the acceleration, and hence the resultant force is directed towards the centre of the circle. ...
Newton came up direction.what they're doing unless a with a scientific formul a to explain stronger force acts on them.this:Force = Mass x Acceleration.158.Air from an untied balloon rushes out in one direction. As the air escapes.it pushes the balloon in the opposite direction.Here,...
Building on Coulomb's law of electrostatics, the model explains the magnitude and the direction of such forces in terms of changes in the flow of information from one charge to the other resulting from their acceleration histories. The model enables a deeper understanding of the forces between ...
2.Explain why Newton's first law of motion is sometimes called the law of inertia?3.Determine whether the inertia of an object changes as the object's velocity changes.4.Explain why an object with a smaller mass has a larger acceleration than an object with a larger mass if the same ...
This law is called the conservation of angular momentum. When a figure skater puts their arms out, some of their mass is further from the center of their body (the point of rotation) so they have a higher moment of inertia. If they're spinning quickly with their arms out but then ...
Across the stable density stratification of the abyssal ocean, deep dense water is slowly propelled upward by sustained, though irregular, turbulent mixing. The resulting mean upwelling determines large-scale oceanic circulation properties like heat and
His first law stated that every object will remain at rest or in motion unless there is a force applied to it. His second law stated that the acceleration of an object is proportional to the force applied to it. His third law stated ...
Explain all three laws of motion.Motion:In physics, the term motion is defined as the variation in the orientation of an object in a unit time. After changing the object's position, the velocity or the acceleration of the object will remain the same....
Aim: How do we explain air resistance? Aim: How do we explain air resistance?
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