Here are the exact instructor-wise teaching plans for your five 2nd Year 1st Term theory courses.

1. ECE 2101: Analog Electronics-II

WeekInstructor 1Instructor 2
1Tuned amplifier, Resonant circuit, Quality factorDiode Wave Shaping Techniques
2Bandwidth of a tuned amplifier, Tuned potential amplifierClipping and Clamping circuits
3Single tuned, Double tuned, and Cascade amplifierComparator Circuits, Switching Circuits
4Feedback amplifiers: The feedback conceptPulse transformers, transmission, and generation
5General characteristics of negative Feedback amplifierIntroduction to Op-Amps, Op-Amp characteristics
6Voltage series feedbackAC, AD, CMRR, Slew Rate, Offset Voltage
7Current series feedbackDifferentiator, Integrator, Comparator Circuits
8Current shunt feedbackSchmitt trigger, Linear Applications of OP-Amps
9Voltage shunt feedbackActive filter, Nonlinear applications of OP-Amp
10Oscillators: Condition of self-oscillationsAstable & Monostable modes of Amplifier
11Study of different types of oscillatorsOther ICs, IC 555 with applications
12Design of oscillators, frequency stabilityPhase Looked Loop (PLL)
13Negative resistance in oscillatorsAnalog Computer and Applications, Practical Op-Amp ICs

2. ECE 2103: Digital Electronics and Logic Circuits

WeekInstructor 1Instructor 2
1Representation of Numbers in different bases; Addition, SubtractionIntroduction to Sequential Circuits
2Base Complement; Binary Multiplication and DivisionAnalysis and Synthesis of Synchronous Sequential Circuits
3Different Code Systems. Boolean Algebra: Various GatesIntroduction to flip-flops, SR, JK, flip-flops
4Sum of products and Product of Sums; Maxterm, MintermMaster Slave, T & D type Flip Flops and Truth Tables
5Karnaugh map methodSynchronous and Asynchronous Counters
6NOR, NAND, AND, OR, INVERT ImplementationRing Counter, Johnson Counter, Counter with Parallel Load
7Diode Logic Gates, Transistor Switches/Gates, MOS GatesRegisters
8TTL, ECL, IIL and CMOS logic with operation detailsMultivibrators
9Design Procedure; Adder, Subtractor, Code ConvertersSemiconductor Memory units
10Parity bit Checker. Analysis of Combinational CircuitsMagnetic Memory units
11Decoder, MultiplexerA/D converter and its applications
12De-multiplexer, ROM and PLAD/A converter and its applications
13Review classesReview classes

3. ECE 2105: Electromagnetic Fields and Waves

WeekInstructor 1Instructor 2
1Introduction to field theory and useful operatorsNecessity of field theory, Coordinate system
2Introduction of fundamental postulates of electrostaticsGradient, Divergence, Curl and its related theorem
3Coulomb’s law and its applicationFundamental postulates of magnetostatics
4Gauss’s law and its applicationAmpere Circuital law, Vector magnetic potential
5Definition and evaluation of electric potentialBiot Savart law, Magnetic dipole, Scalar magnetic potential
6Conductors in static electric field, boundary conditionsMagnetization, Equivalent current and charge density
7Electrostatics energy and forcesMagnetic field intensity, Magnetic materials
8Poisson’s and Laplace’s equations, equation of continuityBoundary condition for magnetostatics
9Maxwell’s equations and their applicationsMagnetic energy, Hall effect, Forces and Torques
10Potential function and wave equationPlane electromagnetic waves, Doppler effect
11Electromagnetic boundary conditions, solution of wave equationsTransverse electromagnetic waves, Polarization
12Analysis of a plain electromagnetic wavePlane waves in lossy media, Ionized Gas
13Analysis of radio wave propagationFlow of electromagnetic power and poynting vector

4. ECE 2107: Signals and Systems

WeekInstructor 1Instructor 2
1Introduction to Fourier Series and its significanceIntroduction to signal & system, Continuous/Discrete-time signals
2Fourier trigonometric expansion of common signalsSignal types and their applications in network analysis
3Application of signal symmetricity for Fourier seriesContinuous and discrete-time systems, basic system properties
4Exponential form of Fourier SeriesThe convolution sum for discrete time systems
5Parseval’s theoremConvolution integral for continuous-time systems
6Introduction to Fourier transform and propertiesProperties of linear time invariant systems
7Energy and power spectral densityFrequency response, systems described by differential equations
8Application of Fourier transform on common signalsHomogeneous and particular solution and difference equations
9Introduction to Laplace transform and its propertiesUniform sampling, Sampling theorem
10Analysis of s plane and application for system stabilityDigital to analog conversion
11Application of Laplace transform for solving LTI systemsAliasing decimation and interpolation, zero/first order hold
12Introduction to definition and properties of z transformDigital processing of continuous-time signals
13Study on z plane and application of z transformAnalog filter, Band pass sampling

5. Math 2109: Vector, Matrix and Transform

WeekInstructor 1Instructor 2
1Introduction to matrix and its operationsIntroduction to Vector & describe rules and properties
2Introduction to different types of matricesVector Differentiation and its Application
3Finding different forms of matrices and its rankIntroduction of Scalar/vector functions, Gradient, Divergence
4Solve and interpret system of Linear equationsSolve and applications of Gradient, Divergence & Curl
5Analyze elementary Linear Physical SystemsDiscuss Line Integral, Surface & Volume Integral
6Basic Theorem of Laplace TransformSolve problems of Line Integral
7Laplace Transform of some elementary functionsSolve problems of Surface & Volume Integral
8Laplace Transform of Error Function and complementDiscuss some theorem related to vector integral
9Laplace Transform of Periodic, Unit Step FunctionSolve problems by using theorems and its application
10Inverse Laplace Transform and its propertiesBasic laws and properties of Fourier Series
11Solving Irrational Function, Convolution, Partial FractionIntroduction to Fourier series and its rules and properties
12Apply Laplace Transformation to solve mathematical problemsApplication of Fourier series to physical problems
13Linear Circuits Problem using Laplace TransformationDiscuss Fourier integral representations and transformation

(Note: Week 8 typically represents the week immediately following the mid-term break)