answersLogoWhite

0

The maximum velocity and acceleration of a point on a string depend on the properties of the string and the forces acting on it. The velocity of a point on the string can be limited by factors such as tension and length of the string. The acceleration of a point on the string can be limited by factors such as the mass of the string and the forces acting on it. The maximum velocity and acceleration can vary depending on the specific situation and conditions.

User Avatar

AnswerBot

3mo ago

What else can I help you with?

Continue Learning about Physics

What can Acceleration be found by?

Acceleration can be found by dividing the change in velocity by the time taken for that change to occur. It is a measure of how quickly the velocity of an object is changing over time. Mathematically, acceleration can be calculated as the derivative of velocity with respect to time.


How do i find acceleration?

Acceleration can be found by dividing the change in velocity by the time it took to change. The formula for acceleration is acceleration = (final velocity - initial velocity) / time. Alternatively, acceleration can be found by using the equation acceleration = force / mass, according to Newton's second law of motion.


If a car goes in 6.8 seconds how do you figure out the acceleration?

To calculate acceleration, you need to know the initial velocity of the car and its final velocity after 6.8 seconds. The acceleration can be found using the formula: acceleration = (final velocity - initial velocity) / time.


Acceleration can be found by computing the slope of what vs. time graph.?

Acceleration can be found by computing the slope of a velocity vs. time graph. Acceleration is the rate of change of velocity over time, so the slope of a velocity vs. time graph represents this change in velocity.


The velocity of a body thrown vertically upward is reduced into half in one secondwhat is the maximum height attained by it?

The maximum height attained by the body can be calculated using the formula: height = (initial velocity)^2 / (2 * acceleration due to gravity). Since the velocity is reduced to half in one second, we can calculate the initial velocity using the fact that the acceleration due to gravity is -9.81 m/s^2. Then, we can plug this initial velocity into the formula to find the maximum height reached.

Related Questions

What can Acceleration be found by?

Acceleration can be found by dividing the change in velocity by the time taken for that change to occur. It is a measure of how quickly the velocity of an object is changing over time. Mathematically, acceleration can be calculated as the derivative of velocity with respect to time.


How do i find acceleration?

Acceleration can be found by dividing the change in velocity by the time it took to change. The formula for acceleration is acceleration = (final velocity - initial velocity) / time. Alternatively, acceleration can be found by using the equation acceleration = force / mass, according to Newton's second law of motion.


If a car goes in 6.8 seconds how do you figure out the acceleration?

To calculate acceleration, you need to know the initial velocity of the car and its final velocity after 6.8 seconds. The acceleration can be found using the formula: acceleration = (final velocity - initial velocity) / time.


Acceleration can be found by computing the slope of what vs. time graph.?

Acceleration can be found by computing the slope of a velocity vs. time graph. Acceleration is the rate of change of velocity over time, so the slope of a velocity vs. time graph represents this change in velocity.


The velocity of a body thrown vertically upward is reduced into half in one secondwhat is the maximum height attained by it?

The maximum height attained by the body can be calculated using the formula: height = (initial velocity)^2 / (2 * acceleration due to gravity). Since the velocity is reduced to half in one second, we can calculate the initial velocity using the fact that the acceleration due to gravity is -9.81 m/s^2. Then, we can plug this initial velocity into the formula to find the maximum height reached.


How to find maximum centripetal acceleration?

That depends on the situation, on the problem you are trying to solve. If speed is constant, maximal centripetal acceleration occurs where the radius of curvature is smallest - for example, in the case of a parabola, at its vertex. If the radius of curvature is constant, maximum centripetal acceleration occurs when the speed is greatest (for an object reacting to gravity, that might be at the bottom of a circular path). In other cases, you have to get a general expression for the centripetal acceleration, and maximize it (using methods of calculus).


What equation can you use to find acceleration?

Acceleration equals the change in the velocity divided by time. The change in the velocity is found by subtracting the initial velocity from the final velocity. It is written as "a equals delta v over t."


Find average acceleration and instanious acceleration?

average acceleration is the average of the acceleration of a body in its entire motion where as instantaneous acceleration is the rate of change of velocity at an instant. it may be a function of time or velocity or displacement.


How is acceleration found?

You divide a change in velocity by the time it takes for that change.


How average acceleration is found?

You divide a change in velocity by the time it takes for that change.


How do you find initial acceleration.?

You use the information you're given, along with the equations and formulas you know that relate distance, time, speed, and acceleration, to calculate the number you're asked to find. And here's a tip: Chances are that the initial acceleration, the final acceleration, and the acceleration all along the way, are all the same number.


How to find acceleration without using force?

You can use the basic definition of acceleration, as a change of speed. In other words, measure the velocity at some moment, and at a later moment. Then divide the change of velocity by the time.