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DC circuit theorem(Thevenin Norton)

Total questions: 15

Worksheet time: 8mins

Name
Class
Date
1.

What is the Rth resistor value?

a)

8 Ω

b)

10 Ω

c)

40 Ω

d)

50 Ω

2.

What would the following circuit look like, with only the voltage contribution?

a)
b)
3.

What is the contribution from the voltage source?

a)

5V

b)

7.5V

c)

10V

d)

15V

4.

What is the Vout value from the current source?

a)

5V

b)

10V

c)

15V

d)

20V

5.

What is the Vout voltage?

a)

2.5V

b)

10V

c)

12.5V

d)

17.5V

6.

In order to find equivalent circuit, Which diagram is correct ?

a)

A

b)

B

7.

As shown in Figure , if I equals zero, how many Ω\Omega   is the resistor R?

a)

2 Ω\Omega  

b)

3 Ω\Omega  

c)

6 Ω\Omega  

d)

9 Ω\Omega  

8.

In the circuit shown in the figure, what is the loop current Ib?

a)

2A

b)

1A

c)

-1A

d)

-2A

9.

As shown in the figure, try to find the voltage drop across the 6Ω resistor

a)

12V

b)

0V

c)

6V

d)

-2V

10.

In the circuit shown in the figure, find the value of I_____A

a)

1

b)

0

c)

-1

d)

-2

11.

Figure (b) is Norton Equivalent Electricity of Figure (a) circuit, find its equivalent current IN and equivalent resistance RN respectively?

a)

IN=–5A,RN=9Ω

b)

IN=5A,RN=11Ω

c)

IN=7A,RN=9Ω

d)

IN=–7A,RN=11Ω

12.

 

Consider the circuit shown below. Find the equivalent Thevenin’s voltage between nodes A and B.

a)

8V

b)

8.5V

c)

9V

d)

9.5V

13.

In the circuit shown above in question 1 find the thevenin’s resistance between terminals A and B

a)

1 Ω\Omega  

b)

2 Ω\Omega  

c)

1.7 Ω\Omega  

d)

2.7 Ω\Omega  

14.

Determine the equivalent thevenin’s voltage between terminals A and B in the circuit shown below.

a)

0.333

b)

3.33

c)

33.3

d)

333

15.

Determine the equivalent thevenin’s voltage between terminals A and B in the circuit shown below.

a)

5

b)

15

c)

25

d)

35