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

In a uniformly charged sphere of total charge $Q$ and radius $R$, the electric field $E$ is plotted as function of distance from the centre of the sphere. The graph which would correspond to the above description will be

A

TS EAMCET 2020 (Online) 14th September Evening Shift Physics - Electrostatics Question 1 English Option 1

B

TS EAMCET 2020 (Online) 14th September Evening Shift Physics - Electrostatics Question 1 English Option 2

C

TS EAMCET 2020 (Online) 14th September Evening Shift Physics - Electrostatics Question 1 English Option 3

D

TS EAMCET 2020 (Online) 14th September Evening Shift Physics - Electrostatics Question 1 English Option 4

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

Electric charges $+q$ and $-q$ are placed at points $A$ and $B$ respectively which are at a distance of $2 L$ apart. If $C$ is the midpoint between $A$ and $B$, then the work done in moving a charge $+Q$ along the semi-circle $C R D$ is

TS EAMCET 2020 (Online) 14th September Evening Shift Physics - Electrostatics Question 2 English

A

$\frac{q Q}{2 \pi \varepsilon_0 L}$

B

$\frac{q Q}{6 \pi \varepsilon_0 L}$

C

$-\frac{q Q}{6 \pi \varepsilon_0 L}$

D

$\frac{q Q}{4 \pi \varepsilon_0 L}$

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

Find the equivalent resistance between point $A$ and $B$ in the following circuit. (The resistance of each resistor is $R$ )

TS EAMCET 2020 (Online) 14th September Evening Shift Physics - Current Electricity Question 1 English

A

$\frac{34}{55} R$

B

$\frac{45}{77} R$

C

$\frac{3}{5} R$

D

$\frac{5}{3} R$

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

In a meter bridge the balancing length from the left end is found to be 25 cm . The value of the unknown resistance is (assume, standard resistance of $1 \Omega$ is in the right gap)

A

$0.25 \Omega$

B

$0.33 \Omega$

C

$0.20 \Omega$

D

$0.50 \Omega$

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