Showing posts with label BSCS NOTES ( 1- 4th Semester). Show all posts

Data Structure Using C++ and Java

PowerPoint Lectures
DATA STRUCTURE USING C++
Lec-1 Introduction
Lec-2-3-Time-Complexity
Lec-4 Abstract Data Type
Lec-5 Arrays ADT
Lec-6 List ADT and Linked Lists
Lec-7 Stacks
Lec-8 Queues
Lec-9 Trees
Lec-10 Trees-BST
lec-12 Trees-BST
Lec-13 AVL Trees
Lec-14 AVL Trees Implementation
Lec-16 Tries Data Structure
Lec-17 Sets
Lec-18-amp-19-amp-20-amp-21-Hasing
Lec-22-B-Trees
Lec-23-B-Trees
Lec-24-Recursion
Lec-25-Recursion
Lec-26 and-27-HeapSort
Lec-28 Trees Operations
Lec-30-Heap-Sort
Lec-31 and 32-Graph
Lec-34 Graphs Searching
Lec-35 Minimum Spanning Tree
Lec-36 Shortest Path Algorithms
Lec 37 All-Pairs Shortest Path Problem
Lec-38-Topological Sort
Lec-39-Internal Sorting Techniques
Lec-40-Sorting Techniques II









DATA STRUCTURE C++ Source Code
AVL Tree Implementation







Software Engineering 1


PowerPoint Lectures
Software Engineering 1
Lec-1 Introduction
Lecture 2
Lecture 3
CMMI
Lecture 4
Lecture 5
Lec-5-Software Project Managment
Project Management
Software Cost Estimation
Team Organization
Software Cost and Effort Estimation
Analysis Modeling
Software Testing Strategies
Software Testing Techniques


Lectures content:

  1. Overview and motivations
    • Real-world examples
    • Software process overview
    • Project management overview
  2. Requirements analysis
    • Requirements elicitation
    • Formal specification overview
  3. Software design
    • Software architectures
    • Function-oriented design
    • Object-oriented design
  4. Software development processes
    • Rapid software development
    • Reuse
    • Component-based software engineering
    • Critical systems development
    • Software evolution
  5. Verification and Validation
    • Static verification
    • Testing
  6. Project management
    • Cost estimation
    • Configuration management

Lectures

Lecture 11/09/2006Introduction to Software Engineering (Ch. 1) (752 Kb)
Lecture 21/11/2006The Big Picture (Ch. 2 & 3) (591.5 Kb)
Lecture 31/18/2006Software Process Models (Ch. 4) (1.654 Mb)
Lecture 41/23/2006Project Management (Ch. 5) (907.5 Kb)
Lecture 51/25/2006Software Requirements (Ch. 6) (1.939 Mb)
Lecture 61/30/2006Requirements Engineering Process (Ch. 7) (1.168 Mb)
Lecture 72/08/2006System Models (Ch. 8) (2.188 Mb)
Lecture 82/15-20/2006Formal Specification (Ch. 10) (1.461 Mb)
Lecture 92/20-22/2006Architecture Design (Ch. 11) (3.421 Mb)
Lecture 102/27/2006Function-oriented Design (601.5 Kb) From 5th Edition, Chapter 15 (download here)
Lecture 113/01/2006Introduction to Usability (162 Kb)
Lecture 123/08/2006Object-Oriented Design (Ch. 14) (2.021 Mb)
Lecture 1303/27-29/2006, 4/03/2006Verification & Validation (Ch. 22&23) (2.301 Mb)
Lecture 144/10/2006Cost Estimation (Ch. 26) (583 Kb)
Lecture 15A4/12/2006Software Evolution (Ch. 21) (982 Kb)
Lecture 15B4/12/2006Configuration Management (Ch. 29) (479.5 Kb)
Lecture 16A4/17/2006Critical Systems Specification (Ch. 9) (1.129 Mb)
Lecture 16B4/17/2006Critical Systems Development (Ch. 20) (184 Kb)
Lecture 17A4/19/2006Critical Systems Validation (Ch. 24) (1.136 Mb)
Lecture 17B4/19/2006Rapid Application Development (Ch. 17) (2.67 Mb)
Lecture 184/24/2006Software Reuse (Ch. 18 & 19) (2.383 Mb)


Ian Sommerville Lectures
.
Download zip of all presentations (PPT). This file is about 20 MBytes.
Download zip of all presentations (PDF). This file is about 25 MBytes. Sorry, no dark text on light background available in PDF.
Chap. 1 (PPT) (PDF)Chap. 2 (PPT) (PDF)Chap. 3 (PPT) (PDF)Chap. 4 (PPT) (PDF)Chap. 5 (PPT) (PDF)
Chap. 6 (PPT) (PDF)Chap. 7 (PPT) (PDF)Chap. 8 (PPT) (PDF)Chap. 9 (PPT) (PDF)Chap. 10 (PPT) (PDF)
Chap. 11 (PPT) (PDF)Chap. 12 (PPT) (PDF)Chap. 13 (PPT) (PDF)Chap. 14 (PPT) (PDF)Chap. 15 (PPT) (PDF)
Chap. 16 (PPT) (PDF)Chap. 17 (PPT) (PDF)Chap. 18 (PPT) (PDF)Chap. 19 (PPT) (PDF)Chap. 20 (PPT) (PDF)
Chap. 21 (PPT) (PDF)Chap. 22 (PPT) (PDF)Chap. 23 (PPT) (PDF)Chap. 24 (PPT) (PDF)Chap. 25 (PPT) (PDF)
Chap. 26 (PPT) (PDF)Chap. 27 (PPT) (PDF)Chap. 28 (PPT) (PDF)Chap. 29 (PPT) (PDF)

















Operating System


PowerPoint Lectures
Operating System
Chap-1 Introduction
Chap-2 Operating-System Structures
Chapter 3: Processes
Chapter 4: Threads
Chapter 5: CPU Scheduling
Chapter 6: Process Synchronization
Chapter 7: Deadlocks
Chapter 8: Memory Management
Chapter 9: Virtual Memory
Chapter 10: File-System Interface
Chapter 11: File System Implementation
Chapter 12: Mass-Storage Systems
Chapter 13: I/O Systems
Chapter 14: Protection
Chapter 15: Security
Module 16: Distributed System Structures
Chapter 17: Distributed-File Systems
Chapter 18: Distributed Coordination
Chapter 19: Real-Time Systems
Chapter 20: Multimedia Systems
Chapter 21: The Linux System
Chapter 22: Windows XP
Module A: FreeBSD System
Module C: Windows 2000
Practical Examples


Digital Logic Design (DLD)


DLD PowerPoint Lectures

DLD Introduction

Boolean Algebra & Logic Gates

Simplification of Boolean Function

Combinational logic

Combinational Logic With MSI LSI

Sequential Logic

Registers and Counters
Numbers with Different Base (Number System)
Complements
Postulates and Theorems of Boolean Algebra
Minterms and Maxterms for three Binary Variables
Karnaugh Map (K Map)
Universal Gate
Adder
Digital IC Terminology
Carry Propagation
Binary Coded Decimal (BCD) Adder
Magnitude Comparator
Decoder
Encoder
Multiplexer
Demultiplxer
Read Only Memory (ROM)
Programmable Logic Array (PLA)
The IC Digital Logic Families
Flip Flop
The D Flip-Flop
J-K Flip-Flop
T Flip Flops
Binary Counting

PHYSICS




PHYSICS 2 BY RESNICK

Introduction; Electric Charge; Coulomb's Law
Electric Field; Electric Forces
Electric Field for Charge Distributions; Electric Field Lines; Electric Dipole
Electric Flux, Gauss' Law; Conductors and Electric Fields
Electric Potential; Electric Potential Energy
Electric Potentials of Charge Distributions; Equipotentials; Electric Field and Electric Potential Gradient
Capacitance; Capacitors in Series and Parallel
Exam 1 Review
Energy stored in Capacitors and Electric Fields; Dielectrics
Electric Current; Current Density; Resistance
EMF; Electric Power
Resistances in Series and Parallel; Kirchhoff's Rules
Electrical Instruments; RC Circuits
Magnets; Magnetic Field; Magnetic Forces on Charged Particles; Magnetic Flux; Gauss' Law for Magnetism
Magnetic Force on Currents; Torque on a Current Loop
Exam 2 Review
Magnetic Field of a Current; Biot-Savart Law
Magnetic Magnetic Field of a Current Loop; Ampere's Law; Solenoids; Toroids
Faraday's Law; Induction; Lenz's Law; Generators; Motional emf
Induced Electric Field; Eddy Currents
Electromagnetic Waves
Light Reflection and Refraction
Concave and Convex Mirrors
Exam 3 Review
Lenses; Optical Instruments
Double Slit Interference
Thin Film Interference
Diffraction
Final Review
Complete Equations Formula's





PHYSICS 1 BY RESNICK

Differential Equations

Differential Equations
Differential Equations With Boundry Value Problems By D.G.Zill 
(7th edition)



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