Physics

General

Easy

Question

# In the figure Velocity (V) position graph is given. Find the true equation.

## The correct answer is:

### Related Questions to study

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### Ball A is thrown in upward from the top of a tower of height h. At the same time ball B starts to fall from that point. When A comes to the top of the tower, B reaches the ground. Find the time to reach maximum height for A.

### Ball A is thrown in upward from the top of a tower of height h. At the same time ball B starts to fall from that point. When A comes to the top of the tower, B reaches the ground. Find the time to reach maximum height for A.

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### The domain of

### The domain of

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### A particle is thrown in upward direction with initial velocity V_{0} It crosses point P at height h at time t_{1} and t_{2} so t_{1} t_{2} ……..

### A particle is thrown in upward direction with initial velocity V_{0} It crosses point P at height h at time t_{1} and t_{2} so t_{1} t_{2} ……..

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### The domain of the function

### The domain of the function

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### Let is given by

### Let is given by

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### If

### If

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### If ,then the inverse function of

### If ,then the inverse function of

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### If observe the following

The true statements are

### If observe the following

The true statements are

maths-General

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### Statement I : is one - one

Statement II : are two functions such that

Staatement III :

Which of the above statement/s is/are true.

### Statement I : is one - one

Statement II : are two functions such that

Staatement III :

Which of the above statement/s is/are true.

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### A glass capillary sealed at the upper end is of length 0.11 m and internal diameter m. The tube is immersed vertically into a liquid of surface tension N/m. To what length has the capillary to be immersed so that the liquid level inside and outside the capillary becomes the same?

### A glass capillary sealed at the upper end is of length 0.11 m and internal diameter m. The tube is immersed vertically into a liquid of surface tension N/m. To what length has the capillary to be immersed so that the liquid level inside and outside the capillary becomes the same?

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### Water flows through a frictionless duct with a cross-section varying as shown in fig. . Pressure p at points along the axis is represented by: A resume water to be non-viscour

### Water flows through a frictionless duct with a cross-section varying as shown in fig. . Pressure p at points along the axis is represented by: A resume water to be non-viscour

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### A cubical block of wood 10 cm on a side floats at the interface between oil and water with its lower surface horizontal and 4 cm below the interface. The density of oil is . The mass of block is

### A cubical block of wood 10 cm on a side floats at the interface between oil and water with its lower surface horizontal and 4 cm below the interface. The density of oil is . The mass of block is

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### Water flows through a frictionless duct with a cross-section varying as shown in fig. Pressure p at points along the axis is represented by

### Water flows through a frictionless duct with a cross-section varying as shown in fig. Pressure p at points along the axis is represented by

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### The diagram shows a cup of tea seen from above. The tea has been stirred and is now rotating without turbulence. A graph showing the speed v with which the liquid is crossing points at a distance X from O along a radius XO would look like

### The diagram shows a cup of tea seen from above. The tea has been stirred and is now rotating without turbulence. A graph showing the speed v with which the liquid is crossing points at a distance X from O along a radius XO would look like

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