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Group 2 Quiz

Total questions: 50

Worksheet time: 3hrs 30mins

Name
Class
Date
1.

Each parallel path in a circuit is called a ??

a)

Way

b)

Line

c)

Branch

2.

series or parallel circuit?

a)

Parallel Circuit

b)

Series Circuit

3.

series or parallel circuit??

a)

Parallel Circuit

b)

Series Circuit

4.

Series or Parallel Circuit??

a)

Parallel Circuit

b)

Series Circuit

5.

Series or Parallel Circuit?

a)

Parallel Circuit

b)

Series Circuit

6.

Calculate the Total Resistance

R1= 37Ω R2=32Ω

a)

15.28Ω

b)

32.43Ω

c)

17.16Ω

d)

9.5Ω

7.

Calculate the Total Resistance

R1= 120Ω R2=86Ω

a)

50.1Ω

b)

47.9Ω

c)

29.68Ω

d)

58.91Ω

8.

Calculate the Total Resistance

R1= 18Ω R2=43Ω

a)

21.34Ω

b)

19.4Ω

c)

33.43Ω

d)

12.69Ω

9.

Calculate the Total Resistance

R1=72Ω R2=65Ω

a)

35.2Ω

b)

6.89Ω

c)

34.16Ω

d)

21.9Ω

10.

Calculate the Total Resistance

R1=69Ω R2=119Ω

a)

43.68Ω

b)

63.12Ω

c)

41.78Ω

d)

39.12Ω

11.

Calculate the Total Resistance

R1=40Ω R2=78Ω R3=118Ω

a)

21.60Ω

b)

24.96Ω

c)

13.52Ω

d)

33.8Ω

12.

Calculate the Total Resistance

R1=14Ω R2=59Ω R3=87Ω

a)

15.5Ω

b)

7.09Ω

c)

10.01Ω

d)

10.98Ω

13.

Calculate the Total Resistance

R1=114Ω R2=109Ω R3=97Ω

a)

36.73Ω

b)

33.57Ω

c)

30.93Ω

d)

35.39Ω

14.

Calculate the Total Resistance

R1=59Ω R2=78Ω R3=111Ω

a)

50.89Ω

b)

25.79Ω

c)

69.42Ω

d)

21.3Ω

15.

Calculate the Total Resistance

R1=115Ω R2=118Ω R3=120Ω

a)

35Ω

b)

41.23Ω

c)

39.21Ω

d)

19.79Ω

16.

IT IS THE PRESSURE FROM AN ELECTRICAL CIRCUIT’S POWER THAT PUSHES CHARGED ELECTRON

(CURRENT) THOUGH A CONDUCTING LOOP (2POINTS)

(a)  

17.

WHAT IS THE SYMBOL OF VOLTAGE?

a)

B

b)

V

c)

VT

d)

VOL

18.

EACH BRANCH OF PARALLEL CIRCUIT HAS THE SAME VALUE OF VOLTAGE?

a)

True

b)

False

19.

Can heat generate voltage?

a)

Yes

b)

No

20.

Electromagnetic can generate voltage?

a)

Yes

b)

No

21.

Can air generate voltage?

a)

Yes

b)

No

22.

What is the first law in kirchhoff’s law

a)

Kirchhoff’s Current  Law

b)

Kirchhoff’s Voltage Law

23.

The sum of the currents into a node is equal to the sum of?

a)

The currents in of the node

b)

The currents out of the node

24.

A parallel circuit acts as a ______ because the current entering the junction of parallel branches “divides” up into several individual branch currents.

a)

current divider

b)

voltage divider

25.

The same voltage is across each of the resistors in parallel, the branch currents are ________________to the values of the resistors.

a)

directly proportional

b)

inversely proportional

26.
a)

10mA

b)

5mA

c)

15mA

27.

Determine the current through R1

a)

.71mA

b)

1.50mA

c)

2.34mA

d)

1.71mA

28.

Determine the current through R2

a)

3.12mA

b)

3.36mA

c)

3.8mA

d)

3.63mA

29.

Determine the current through R3

a)

5.28mA

b)

6.05mA

c)

5.43mA

d)

5.05mA

30.

Find the I1

a)

31mA

b)

15mA

c)

38mA

d)

13mA

31.

Find the I2

a)

69mA

b)

66mA

c)

73mA

d)

62mA

32.

To find the ____________ of a series-parallel combination, first identify the series and parallel relationships, and then determine total series and total parallel resistance.

a)

Total resistance

b)

Total current

c)

Ohm’s law

d)

Voltage

33.

Once you know the total resistance and the source voltage, you can apply __________ to find the total current in a circuit

a)

Total resistance

b)

Total current

c)

Kirchhoff’s laws

d)

Ohm’s law

34.

__________ is the source voltage divided by the total resistance.

a)

Total resistance

b)

Total current

c)

Kirchhoff’s laws

d)

Ohm’s law

35.

________ is the pressure from an electrical circuit's power source that pushes charged electrons (current) through a conducting loop, enabling them to do work such as illuminating a light.

a)

Total resistance

b)

Total current

c)

Ohm’s law

d)

Voltage

36.

________ is a measure of the opposition to current flow in an electrical circuit

a)

Resistance

b)

Total current

c)

Ohm’s law

d)

Voltage

37.

Figure 1(a) shows an example of a simple series-parallel combination of resistors. Notice that the resistance from A to B is R1. The resistance from B to C is R2 and R3 in parallel.

a)

True

b)

False

38.

When the circuit in Figure 1 is connected to a voltage source as shown in part (c) the total current through R1 divides at point B into the two parallel paths. These two branch currents then recombine.

a)

True

b)

False

39.

The total resistance from A to C is R1 in series with the parallel combination of R2 and R3, as indicated in Figure 1(b).

a)

True

b)

False

40.

In Figure 2, is connected in series with R1. This series combination is in series with the parallel combination of R2 and R3 as illustrated in Figure 2.

a)

True

b)

False

41.

. In Figure 3, R5 is connected in series with R2. The series combination of R2 and R5 is in parallel with R4.

a)

True

b)

False

42.

Voltage divider are one of the most fundamental circuits in electronics.

a)

True

b)

False

43.

Voltage divider is a simple circuit which turns a small voltage into a larger one.

a)

True

b)

False

44.

Voltage divider are not one of the most fundamental circuits in electronics.

a)

True

b)

False

45.

Voltage divider is a simple series resistor circuit.

a)

True

b)

False

46.

Is the result of distributing the input voltage among the components of the divider.

a)

Output voltage

b)

Voltage divider

c)

Input voltage

d)

Voltage division

47.

Is the line voltage or the supply power.

a)

Input voltage

b)

Voltage division

c)

Output voltage

d)

Voltage divider

48.

Is a passive linear circuit that produces an output voltage that is a fraction of its input voltage.

a)

Input voltage

b)

Voltage division

c)

Voltage divider

d)

Output voltage

49.

Also known as potential divider.

a)

Voltage division

b)

Output voltage

c)

Input voltage

d)

Voltage divider

50.

Is the voltage released by a device such as a voltage regulator or a generator.

a)

Input voltage

b)

Output voltage

c)

Voltage divider

d)

Voltage division