Constant positive acceleration and zero initial velocity
The velocity-time graph passes through the origin and is inclined to the time-axis such that the angle of inclination is greater than 0 o and less than 90 o , as shown in the figure...
The velocity-time graph passes through the origin and is inclined to the time-axis such that the angle of inclination is greater than 0 o and less than 90 o , as shown in the figure...Velocity
. Can you tell where each of them would be after say 20 seconds? P and Q can move in any direction. To locate the exact position of P and Q we require their direction of motion als..
Position-time graph in relative velocity
a) If two objects A and B are moving with same velocity but have different initial positions, then their position-time graph will be b) If velocity V A > V B i.e., V A - V B is +ve [O represents position and ..
a) If two objects A and B are moving with same velocity but have different initial positions, then their position-time graph will be b) If velocity V A > V B i.e., V A - V B is +ve [O represents position and ..Distance as Area under Velocity-Time Graph
Distance as Area under Velocity-Time Graph..
Distance as Area under Velocity-Time Graph..Position-Time Relations using Position-Time Graphs
In this section, Let us understand how the position changes with time when the velocity changes uniformly with time..
Position-Time Relations using Position-Time Graphs
In this section, Let us understand how the position changes with time when the velocity changes uniformly with time. Let us consider a particle moving with uniform acceleration 'a' and having an initial velocity v (0) at t = 0. For the sake of conve..
In this section, Let us understand how the position changes with time when the velocity changes uniformly with time. Let us consider a particle moving with uniform acceleration 'a' and having an initial velocity v (0) at t = 0. For the sake of conve..Applications of velocity-time graphs
The following results can be deduced from velocity-time graph. The acceleration produced in a body The distance covered by a moving object We can derive the equations of motion Let us see how to calculate the distance covered by a moving object from speed-time..
The following results can be deduced from velocity-time graph. The acceleration produced in a body The distance covered by a moving object We can derive the equations of motion Let us see how to calculate the distance covered by a moving object from speed-time..Constant negative acceleration
Here, the velocity-time graph is a straight line with a negative slope, as shown in the figure below...
Here, the velocity-time graph is a straight line with a negative slope, as shown in the figure below...Time Period of Oscillation Varies with Time
Graph between length and square of the time period of a pendulum L and T 2 plot is a straight line indicating that length is directly proportional to T 2 , Experimentally the value of the constant of Earth is found to be equal to 0.248m/S 2 and mathematically 0.248 if ..
Graph between length and square of the time period of a pendulum L and T 2 plot is a straight line indicating that length is directly proportional to T 2 , Experimentally the value of the constant of Earth is found to be equal to 0.248m/S 2 and mathematically 0.248 if .. Result
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