1
TS EAMCET 2020 (Online) 10th September Evening Shift
MCQ (Single Correct Answer)
+1
-0

An object of mass 2 kg is hanging from a rope that is wrapped around a pulley of radius 25 cm . The mass of pulley is 2 kg . Find the acceleration of the object. (Assume, pulley to be a solid disk $g=10 \mathrm{~m} / \mathrm{s}^2$ )

TS EAMCET 2020 (Online) 10th September Evening Shift Physics - Rotational Motion Question 7 English
A

$\frac{2}{3} \mathrm{~m} / \mathrm{s}^2$

B

$\frac{4}{3} \mathrm{~m} / \mathrm{s}^2$

C

$\frac{10}{3} \mathrm{~m} / \mathrm{s}^2$

D

$\frac{20}{3} \mathrm{~m} / \mathrm{s}^2$

2
TS EAMCET 2020 (Online) 10th September Evening Shift
MCQ (Single Correct Answer)
+1
-0

A point mass oscillates along the $X$-axis according to the law $x=x_0 \cos \left(\omega t-\frac{\pi}{4}\right)$. If the acceleration of the particle is written as $a=A \cos (\omega t-\delta)$, then

A

$A=x_0 \omega^2, \delta=\frac{-3 \pi}{4}$

B

$A=x_0, \delta=-\frac{\pi}{4}$

C

$A=x_0 \omega^2, \delta=\frac{\pi}{4}$

D

$A=x_0 \omega^2, \delta=\frac{3 \pi}{4}$

3
TS EAMCET 2020 (Online) 10th September Evening Shift
MCQ (Single Correct Answer)
+1
-0

The graph correctly represents the variation of acceleration due to gravity $(g)$ with radial distance from the centre of the earth (radius of the earth $=R_e$ ) is

A

TS EAMCET 2020 (Online) 10th September Evening Shift Physics - Gravitation Question 6 English Option 1

B

TS EAMCET 2020 (Online) 10th September Evening Shift Physics - Gravitation Question 6 English Option 2

C

TS EAMCET 2020 (Online) 10th September Evening Shift Physics - Gravitation Question 6 English Option 3

D

TS EAMCET 2020 (Online) 10th September Evening Shift Physics - Gravitation Question 6 English Option 4

4
TS EAMCET 2020 (Online) 10th September Evening Shift
MCQ (Single Correct Answer)
+1
-0

The length of a metal wire is found to be $L_1$ and $L_2$ when the tension of $T_1$ and $T_2$ are applied to it respectively. The natural length of the wire is

A

$\frac{L_1 T_1+L_2 T_2}{T_2+T_1}$

B

$\frac{L_1+L_2}{2}$

C

$\frac{L_1 T_2+L_2 T_1}{T_2+T_1}$

D

$\frac{L_1 T_2-L_2 T_1}{T_2-T_1}$

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