1
TS EAMCET 2020 (Online) 14th September Morning Shift
MCQ (Single Correct Answer)
+1
-0

The graph of potential energy $U(x)$ versus distance $x$ is shown in the following figure. The force $F$ versus distance $x$ graph will be represented by (assume, that the force is conservative)

TS EAMCET 2020 (Online) 14th September Morning Shift Physics - Work, Energy and Power Question 3 English

A

TS EAMCET 2020 (Online) 14th September Morning Shift Physics - Work, Energy and Power Question 3 English Option 1

B

TS EAMCET 2020 (Online) 14th September Morning Shift Physics - Work, Energy and Power Question 3 English Option 2

C

TS EAMCET 2020 (Online) 14th September Morning Shift Physics - Work, Energy and Power Question 3 English Option 3

D

TS EAMCET 2020 (Online) 14th September Morning Shift Physics - Work, Energy and Power Question 3 English Option 4

2
TS EAMCET 2020 (Online) 14th September Morning Shift
MCQ (Single Correct Answer)
+1
-0

A point moves in the $x y$-plane according to the following equation, $x=a \sin \omega t, y=a(1-\cos \omega t)$, where $a$ and $\omega$ are positive constants. Find the angle between the point's velocity and acceleration vectors.

A

$\pi / 2$

B

$\pi / 3$

C

$\pi$

D

$2 \pi$

3
TS EAMCET 2020 (Online) 14th September Morning Shift
MCQ (Single Correct Answer)
+1
-0

Assume proton is rotating along a circular path of radius 1 m under a centrifugal force of $4 \times 10^{-12} \mathrm{~N}$. If the mass of proton is $1.6 \times 10^{-27} \mathrm{~kg}$, then its angular velocity of rotation is

A

$5 \times 10^7 \mathrm{rad} / \mathrm{s}$

B

$10^{15} \mathrm{rad} / \mathrm{s}$

C

$2.5 \times 10^7 \mathrm{rad} / \mathrm{s}$

D

$5 \times 10^{14} \mathrm{rad} / \mathrm{s}$

4
TS EAMCET 2020 (Online) 14th September Morning Shift
MCQ (Single Correct Answer)
+1
-0

A particle is exhibiting simple harmonic motion has its displacement $x$ and velocity $v$ related as $4 v^2=25-x^2$. The time period of SHM is

A

$\pi \mathrm{s}$

B

$2 \pi \mathrm{~s}$

C

$3 \pi \mathrm{~s}$

D

$4 \pi \mathrm{~s}$

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