Tension is directly related to velocity in a system with a mass being pulled by a rope or string. As velocity increases, the tension in the rope also increases due to the acceleration and force required to move the object.
There is, the equation given is veloctiy = sqr root of (Tension/mew) where mew is a constant for the length of string and is given by mew = mass/length. by rearranging to find mew, we get either velocity2/Tension giving 1/mew or we can get Velocity/sqr root of Tension giving 1/sqr root of mew.
Acceleration is the rate of change of velocity with respect to time. If an object's velocity is increasing, it is accelerating positively. If its velocity is decreasing, it is accelerating negatively.
Linear velocity is directly proportional to the radius of the rotating object and the angular velocity. This relationship is described by the equation v = ω * r, where v is the linear velocity, ω is the angular velocity, and r is the radius.
The relation between velocity and area can vary depending on the specific situation. In general, when fluid flows through a pipe or channel, the velocity of the fluid is inversely proportional to the cross-sectional area of the pipe or channel. This means that as the area decreases, the velocity of the fluid tends to increase, and vice versa, according to the principle of conservation of mass.
Linear velocity is directly proportional to the radius at which the object is moving and the angular velocity of the object. The equation that represents this relationship is v = rω, where v is the linear velocity, r is the radius, and ω is the angular velocity. As the angular velocity increases, the linear velocity also increases, given the same radius.
i think that acceleration is directly proportional to surface tension.....
There is, the equation given is veloctiy = sqr root of (Tension/mew) where mew is a constant for the length of string and is given by mew = mass/length. by rearranging to find mew, we get either velocity2/Tension giving 1/mew or we can get Velocity/sqr root of Tension giving 1/sqr root of mew.
Speed is scalar quantity and velocity is a vector - velocity has both speed AND direction (You might say that velocity is speed with an attitude!)
it led to a reduction in tension between the superpowers
as we know the relation between surface tension and temperature is inverse, and that of temperature and density also has inverse proportion, then it is clear that the '''surface tension is directly proportion to the density'''.
Acceleration is the rate of change of velocity with respect to time. If an object's velocity is increasing, it is accelerating positively. If its velocity is decreasing, it is accelerating negatively.
If there is a rotation, "angular velocity" and "angular frequency" is the same thing. However, "angular frequency" can also refer to situations where there is no rotation.
I think Braeking efficiency is the relation between the velocity and the time to stop something in movement.
Velocity is measured as distanced traveled over time
Linear velocity is directly proportional to the radius of the rotating object and the angular velocity. This relationship is described by the equation v = ω * r, where v is the linear velocity, ω is the angular velocity, and r is the radius.
That should be the same; what matters to the plane is the velocity in relation to the air, not in relation to some frame of reference outside the Earth.That should be the same; what matters to the plane is the velocity in relation to the air, not in relation to some frame of reference outside the Earth.That should be the same; what matters to the plane is the velocity in relation to the air, not in relation to some frame of reference outside the Earth.That should be the same; what matters to the plane is the velocity in relation to the air, not in relation to some frame of reference outside the Earth.
the state of tension between nations without armed conflict was know by having the handbook. the intentional relation was founded lately during 2001 for all of the countries out there