1. CSE 2100: Object Oriented Programming Laboratory
| Week | Instructor 1 & 2 (Contents) |
|---|---|
| 1 | Introduction to Object Oriented Programming using C++ |
| 3 | Write a program illustrating class declarations, definition, and accessing class members. |
| 5 | Program to illustrate default constructor, parameterized constructor, copy constructors, destructor and encapsulation. |
| 7 | Write C++ programs that illustrate how the forms of inheritance are supported and abstraction. |
| 9 | Program to demonstrate Polymorphism. |
| 11 | Open – ended lab |
| 13 | Final Lab test, quiz test |
2. ECE 2102: Analog Electronics-II Laboratory
| Week | Instructor 1 & 2 (Contents) |
|---|---|
| 1 | Experimental Demonstration and Measurement of Frequency Response of IC OP-AMP Inverting Amplifier |
| 3 | Experimental demonstration of IC OP-AMP summing amplifier |
| 5 | Experimental Demonstration of IC OP-AMP Voltage Comparator and Zero Crossing Detector & Window Comparator Circuit |
| 7 | Experimental Demonstration of the transistor Astable Multivibrator Circuit |
| 9 | Experimental Demonstration of the 555 Astable Multivibrator Circuit |
| 11 | Open – ended lab |
| 13 | Final performance test, quiz test. |
3. ECE 2104: Digital Electronics and Logic Circuits Laboratory
| Week | Instructor 1 & 2 (Contents) |
|---|---|
| 1 | Gate Test of Different ICs & Their Truth Table Verification |
| 2 | Familiarization & Verification of Universal Gates |
| 3 | Study of a) Full and Half Adder Circuit b) Full and Half Subtractor Circuit |
| 4 | Design and Implementation of BCD to Excess-3 Code Converter |
| 5 | Design & implementation of a) Binary to Gray Code Converter b) Gray to Binary Code Converter |
| 6 | Familiarization & Verification of Different Flip-Flop Circuits |
| 7 | Design and Implementation of a 4-bit Ripple Counter |
| 8 | Design and Implementation of a 4-bit Shift Register Circuit |
| 9 | Design and Implementation of BCD to Seven Segment Decoder |
| 10 | Open ended Lab. |
| 11 | Project presentation on selected topics of digital electronics |
| 12 | Project presentation on selected topics of digital electronics |
| 13 | Performance test in the laboratory, Final quiz test |
4. ECE 2108: Signal and Systems Laboratory
| Week | Instructor 1 & 2 (Contents) |
|---|---|
| 1 | Introduction to MATLAB and different function generation and plotting |
| 3 | Study on even and odd signal, time shifting and energy and power of signals |
| 5 | Implementation and justification of Fourier series and implementation of Fourier transform |
| 7 | Implementation and analysis of LTI system. |
| 9 | Open ended Lab. |
| 11 | Implementation of Laplace transform and z transform for determining system stability |
| 13 | Final Lab Test, Final Quiz Test |
5. ME 2110: Engineering Drawing
| Week | Instructor 1 & 2 (Contents) |
|---|---|
| 1 | Introduce basics of engineering drawing, its classification, line types and projecting lines on various planes. |
| 3 | Understand the dimensioning of an object and apply them to different views. |
| 5 | Understand the principle of drawing orthographic views from pictorial views, isometric views from orthographic views and practicing the same for various objects in hands on session. |
| 7 | Provide knowledge of auxiliary views, rules of drawing the same and practicing for various objects. |
| 9 | Gather knowledge of sectional views and applying it to various objects in hands on session. |
| 11 | Open-ended project show |
| 13 | Final drawing test, quiz test. |