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1/23/2021 Basic Electrical Circuits - - Unit 3 - Week 1: Preliminaries; Current and voltage; Electrical elements and circuits; Kirchhoff'…

https://onlinecourses.nptel.ac.in/noc20_ee64/unit?unit=23&assessment=189 1/4

X

NPTEL (https://swayam.gov.in/explorer?ncCode=NPTEL) » Basic Electrical Circuits (course)

Unit 3 - Week 1: Preliminaries; Current and voltage; Electrical elements and circuits;

Kirchhoff's laws; Basic elements; Linearity

(https://swayam.gov.in)

(https://swayam.gov.in/nc_details/NPTEL)

[email protected]

Announcements (announcements)

About the Course (preview)

Ask a Question (forum) Progress (student/home) Mentor (student/mentor)

Course outline

How does an NPTEL online course work?

Week 0

Week 1: Preliminaries;

Current and voltage;

Electrical elements and circuits; Kirchhoff's laws;

Basic elements; Linearity

Week 2: Elements in series and parallel; Controlled sources

Preliminaries (unit?

unit=23&lesson=28) Current (unit?

unit=23&lesson=30) Voltage (unit?

unit=23&lesson=29) Electrical elements and circuits (unit?

unit=23&lesson=31) Kirchhoff's current law(KCL) (unit?unit=23&lesson=33) Kirchhoff's voltage law(KVL) (unit?unit=23&lesson=34) Voltage source (unit?

unit=23&lesson=35) Current source (unit?

unit=23&lesson=36) Resistor (unit?

unit=23&lesson=37) Capacitor (unit?

unit=23&lesson=38) Inductor (unit?

unit=23&lesson=39) Mutual inductor (unit?

unit=23&lesson=40) Linearity of elements (unit?

unit=23&lesson=41) Week 1 Lecture Material (unit?unit=23&lesson=181) Quiz : Assignment 1 (assessment?name=189) Basic Electrical Circuits : Week 1 Feedback Form (unit?unit=23&lesson=194) Assignment 1 solutions (unit?

unit=23&lesson=210)

Due on 2020-09-30, 23:59 IST.

1)

1 point 2)

1 point

Assignment 1

The due date for submitting this assignment has passed.

As per our records you have not submitted this assignment.

In the circuit above, determine .Use magnitude of electronic charge = (The answer must be in amperes (A). Round off fractional answers to two decimal places.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) -17

In the figure above, determine the voltage in (a). The voltage source is such that when it is connected to a resistor, a current flows as shown in (b).

(The answer must be in volts (V). Round off fractional answers to two decimal places.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) 4

𝐼

1

1.6 × 10

−19

𝐶

𝐕

𝑥

𝑉

1

2𝑘Ω

(2)

1/23/2021 Basic Electrical Circuits - - Unit 3 - Week 1: Preliminaries; Current and voltage; Electrical elements and circuits; Kirchhoff'…

https://onlinecourses.nptel.ac.in/noc20_ee64/unit?unit=23&assessment=189 2/4

Week 3: Power and energy in electrical elements;

Circuit analysis methods Week 4: Nodal analysis

Week 5 : Mesh analysis;

Circuit theorems

Week 6: More circuit theorems; Two port parameters

Week 7: Two port parameters continued;

Reciprocity in resistive networks

Week 8: Opamp and negative feedback; Example circuits and additional topics

Week 9 :First Order Circuits

Week 10 : First order circuits with time-varying inputs

Week 11: Second order system response

Week 12: Direct calculation of steady state response from equivalent components Text Transcripts

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3)

1 point 4)

1 point 5)

1 point 6)

A resistor’s I-V characteristics are shown in the figure above. Determine its resistance.

(The answer must be in kilohms ( kΩ). Round off fractional answers to two decimal places.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) 30

In the figure above, determine the voltage at t=3 μs. (The waveform consists of straight line segments) (The answer must be in volts (V). Round off fractional answers to one decimal place.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) -5

In the figure above, determine the voltage at . The capacitor is initially discharged (i.e. the capacitor voltage is zero at ). (The waveform consists

of straight line segments)

(The answer must be in millivolts (mV). Round off fractional answers to one decimal place.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) 700

𝑣

1

𝑣

𝑐

𝑡 = 6μ𝑠 𝑡 = 0

(3)

1/23/2021 Basic Electrical Circuits - - Unit 3 - Week 1: Preliminaries; Current and voltage; Electrical elements and circuits; Kirchhoff'…

https://onlinecourses.nptel.ac.in/noc20_ee64/unit?unit=23&assessment=189 3/4

1 point 7)

1 point 8)

1 point 9)

In the figure above, determine the voltage at . (The waveform consists of straight line segments) (The answer must be in volts (V). Round off fractional answers to one decimal place.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) -64

In the figure above, determine the current at . The inductor current is zero at . (The waveform consists of straight line segments)

(The answer must be in milliamperes (mA). Round off fractional answers to one decimal place.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) -7.5

In the figure below, determine the voltage at . The capacitor voltage and inductor current are zero at . (The waveform consists of straight line segments)

(The answer must be in volts (V). Round off fractional answers to one decimal place.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) 1.5

In the figure below, determine the voltage at . The capacitor voltage is zero at . (The waveform consists of straight line segments)

(The answer must be in volts (V). Round off fractional answers to one decimal place.)

N th i i t

𝑣

2

𝑡 = 4μ𝑠

𝑖

1

𝑡 = 5μ𝑠 𝑡 = 0

𝑣

1

𝑡 = 5𝑚𝑠 𝑡 = 0

𝑣

1

𝑡 = 5𝑚𝑠 𝑡 = 0

(4)

1/23/2021 Basic Electrical Circuits - - Unit 3 - Week 1: Preliminaries; Current and voltage; Electrical elements and circuits; Kirchhoff'…

https://onlinecourses.nptel.ac.in/noc20_ee64/unit?unit=23&assessment=189 4/4

1 point 10)

1 point No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) 3

In the figure above, . Determine at . The capacitor voltage is zero at . (The answer must be in volts (V). Round off fractional answers to one decimal place.)

No, the answer is incorrect.

Score: 0 Accepted Answers:

(Type: Numeric) 1.6

= 5𝑚𝐴 𝑠𝑖𝑛(2π × 𝑡)

𝑖

1

10

3

𝑣

1

𝑡 = 1.5𝑚𝑠 𝑡 = 0

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