1
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

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

2
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

3
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

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

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

A cubical block of wood having mass of 160 g has a metal piece fastened underneath as shown in the figure. Find the maximum mass of the metal piece which will allow the block to float in water. Specific gravity of wood is 0.8 and that metal is 10 and density of water $=1 \mathrm{~g} / \mathrm{cc}$.

TS EAMCET 2020 (Online) 10th September Evening Shift Physics - Fluid Mechanics Question 4 English

A

55.5 g

B

44.4 g

C

33.3 g

D

66.6 g

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