Effect on Average by Arithmetic Operations

Duration: 6 min

This video lesson is available to enrolled students.

Return to /learn/NTA-UGC-NET-PAPER-2/paper-1-unit-5-mathematical-reasoning-and-aptitude/average/effect-on-average-by-arithmetic-operations/asset-effect-on-average-by-arithmetic-operations after enrolling

Inside: a video lesson and guided study material.

Module outline

  1. Course Overview: About the Course
  2. Paper - 1 | Unit - 1 | Teaching Aptitude: Nature, Objectives & Characteristics of Teaching, Learners & Learning Process, Factors Affecting Teaching, Methods of Teaching, Teaching-Learning Aids & ICT Integration, Evaluation, Assessment & Measurement
  3. Paper - 1 | Unit - 2 | Research Aptitude: Introduction to Research, Validity & Reliability, Research Paradigms & Types of Research, Research Process Steps, Research Ethics, Writing & Publication
  4. Paper - 1 | Unit - 3 | Comprehension: Comprehension / Reading Comprehension / Unseen Passages (Critical Reasoning) (Paragraph Questions)
  5. Paper - 1 | Unit - 4 | Communication: Communication Basics, Language and Semiotics, Types of Communication, Communication Models, Mass Communication, Mass Media, Journalism, General Knowledge and General Studies related to Communication
  6. Paper - 1 | Unit - 5 | Mathematical Reasoning and Aptitude: Series (Number and Letter Series) (Numerical Relations and Reasoning), Coding Decoding, Number System, Percentage, Ratio and Proportion (Ratios), Simple Interest and Compound Interest, Speed Time and Distance, Powers and Exponents (Surds and Indices), Profit and Loss, Average, Blood Relations, Directions (Direction Test), Analytical Reasoning (Counting Figures Reasoning), Verbal Analogy (Word Based Analogy), Divisibility Rules, Calendar, Miscellaneous, Time and Work, Algebra
  7. Paper - 1 | Unit - 6 | Logical Reasoning: Syllogisms, Non Verbal Reasoning (Spatial Aptitude) (Spatial Reasoning) (Visual Reasoning), Deductive and Inductive Reasoning (Logical Deduction and Induction) (Prepositional Reasoning), Venn Diagram, School Of Thoughts, Fallacy, Western Logic
  8. Paper - 1 | Unit - 7 | Data Interpretation: Data Interpretation
  9. Paper - 1 | Unit - 8 | Information and Communication Technology: MS Office Applications, Cyber Threats and Malware Attacks, Role of Internet and Web Services, Electronic Data Interchange and E-Commerce, Internet Fundamentals, Web Design & Development, Web Publishing & Hosting, Emerging Technologies, Terms & Abbreviations, Artificial Intelligence, Society, Law & Ethics, Keyboard Shortcuts, Website, Browser & Services
  10. Paper - 1 | Unit - 9 | People Development and Environment: Ecosystem, Biomes & Environmental Issues, MDG & SDG, Air Pollution, Water Pollution, Soil, Noise Pollution and Waste Management, Natural Resources, Energy & Disaster Management, Global Environmental Conventions – COP, Protocols & ISA
  11. Paper - 1 | Unit - 10 | Higher Education System: Vedic Education, Jainism & Buddhism, Ancient Universities, Pre-Independence Commissions, Post-Independence Policy, Higher Education Structure & Accreditation, Universities & Learning Programmes, Types of Education & NEP 2020
  12. Paper 2 | Unit 1 | Discrete Structures and Optimization: Propositional and Predicate Logic, Set Theory, Relations, Functions, Permutation and Combination, Probability, Graph Theory, Group Theory, Digital Systems & Boolean Basics, Boolean Expression, Boolean Minimization, Optimization
  13. Paper 2 | Unit 2 | Computer System Architecture: Logic Gates & Hardware, Combinational Circuit, Sequential Circuits, Number System, Number Representation, Floating Point Rep, Basics of COA, Register Transfer and Microoperations, Programming the Basic Computer, Instr Formats & Modes, Control Unit Design, Pipelining, Input Output Organisation, Cache Memory Organization, Multiprocessors
  14. Paper 2 | Unit 3 | Programming Languages and Computer Graphics: Language Design, C Fundamentals, Control Flow, Functions, Arrays & Pointers, Storage Classes, Structures & Enums, DMA, Macros, Scoping & File Handling, HTML Basics, XML, JavaScript-Basics, Java, Basics of Computer Graphics, 2-D Geometrical Transforms and Viewing, 3-D Object Representation, Geometric Transformations and Viewing, OOPS with C++, Java Fundamentals
  15. Paper 2 | Unit 4 | Database Management Systems: Basics of DBMS, ER Diagram, Relational Model & Functional Dependencies, Keys & Integrity Constraints, Normalization (1NF - BCNF), Decomposition Properties & 4NF, File Organization & Indexing, Relational Algebra, SQL, Relational Calculus, Transaction Management, Concurrency Control, Database Recovery, ORDBMS, Database Security & Authorization, Query Processing & Optimization, Enhanced Data Models, Data Warehousing & Mining, Big Data Systems, NoSQL
  16. Paper 2 | Unit 5 | System Software and Operating System: Introduction to OS, Process Management, CPU Scheduling, Process Synchronization, Threads & Process Creation, Deadlock, Memory Management, Virtual Memory, Disc Scheduling, File Management, Windows OS, Linux OS, Security, Distributed Systems, Virtual Machines
  17. Paper 2 | Unit 6 | Software Engineering: Fundamentals of Software Engineering, Software Requirements and Quality Assurance, Software Design, Estimation and Metrics, Software Testing, Software Maintenance and Configuration Management
  18. Paper 2 | Unit 7 | Data Structures and Algorithms: Introduction to DS, Array, Stack, Queue, Linked List, Tree, Graphs, Hashing, Algorithm Analysis, Time Complexity Analysis, Sorting Algorithms, Greedy Algorithms, Dynamic Programming, Minimum Spanning Trees, Shortest Path Algos, Advanced Algorithms
  19. Paper 2 | Unit 8 | Theory of Computation and Compilers: Introduction to TOC, Deterministic FA (DFA), Non-Deterministic FA, Regular Expressions, Grammar, Regular Language Properties, Moore & Mealy Machines, Pushdown Automata & CFG, Turing Machines, Complexity Theory, Intro to Compilers, Lexical Analysis, Grammar & CFG, Syntax Analysis: Top-Down, Syntax Analysis: Bottom-Up, Semantic Analysis & SDT, Intermediate Code Gen, Code Optimization, Run Time Environment
  20. Paper 2 | Unit 9 | Data Communication and Computer Networks: Introduction to CN, Data Communication, DLL: Access Control, DLL: Flow Control, DLL: Error Control, DLL: Framing, Data Link Layer - Ethernet, Net Layer: IPv4 & Proto, Net Layer: IP Addressing, Net Layer:Routing Protocol, Transport Layer Services, TL: Congestion & UDP, Application Layer, Hardware basics, Network Security, Mobile Technology, Cloud Computing and IoT, Cloud Computing
  21. Paper 2 | Unit 10 | Artificial Intelligence: Approaches to AI, Search Algorithms, Game Playing, Knowledge Representation, Planning, Multi Agent Systems, Fuzzy Sets, Natural Language Processing, Artificial Neural Networks, Genetic Algorithms
  22. Live Classes: NTA UGC NET 2025 Live Class
  23. Paper 1 | Full Mock Tests:
  24. Paper 2 | Full Mock Tests:
  25. Paper 1 | Previous Year Papers:
  26. Paper 2 | Previous Year Papers:
AI summary & chapters

AI Summary

An AI-generated summary of this video lecture.

This video is a tutorial on solving average-related problems, presented by an instructor named Yash Jain Sir. The lesson begins with a problem (Q1) where the average of a set of numbers is given, and the task is to find the average of a new set of numbers that are each 2 more than the original numbers. The instructor demonstrates that the new average is simply the original average plus 2, which is 36 + 2 = 38. The video then progresses to a second problem (Q2) where the new numbers are each 3 less than the original, leading to a new average of 36 - 3 = 33. A third problem (Q3) shows a new set of numbers that are each 20 less than the original, resulting in an average of 36 - 20 = 16. The fourth problem (Q4) involves numbers that are each 4 times the original, so the new average is 36 * 4 = 144. The final problem (Q5) is a classic age problem: if the current average age of a family is 30, what will the average be after 5 years? The instructor explains that each person's age increases by 5, so the total sum increases by 5 times the number of people, and the new average is 30 + 5 = 35. The video uses a blackboard for calculations and is structured as a series of practice questions to teach a consistent method for solving average problems.

Chapters

  1. 0:00 – 2:00 00:00-02:00

    The video opens with a title card displaying the word "AVERAGE" in a futuristic, glowing font against a dark, digital background. It then transitions to a lecture format with a blackboard. The first problem, Q1, is presented: "If the average of 25, 35, 40, 60 is 36. Then what is the average of 27, 22, 37, 42, 62?" The instructor, Yash Jain Sir, begins to solve it by noting that each number in the second set is 2 more than the corresponding number in the first set. He writes the sum of the new numbers as 27 + 22 + 37 + 42 + 62 and calculates the total as 190. Dividing by 5 gives the average of 38, which is the correct answer (b).

  2. 2:00 – 5:00 02:00-05:00

    The video presents a series of four problems. Q2 asks for the average of numbers that are 3 less than the original set (22, 17, 32, 37, 57). The instructor calculates the sum as 165 and divides by 5 to get 33. Q3 presents numbers that are 20 less than the original (5, 4, 7, 8, 12), with a sum of 36 and an average of 7.2. Q4 involves numbers that are 4 times the original (100, 80, 140, 160, 240), with a sum of 720 and an average of 144. The instructor demonstrates that for Q4, the average is 4 times the original average (36 * 4 = 144). The final problem, Q5, is a word problem: "The average age of a family is 30 years. After 5 years, what is the average age of family??" The instructor explains that the total age increases by 5 times the number of family members, so the average increases by 5, resulting in 35 years.

  3. 5:00 – 5:46 05:00-05:46

    The video concludes with a final summary of the problems. The instructor reiterates the method for solving average problems: if all numbers in a set are increased or decreased by a constant value, the average changes by that same value. If all numbers are multiplied by a constant, the average is multiplied by that constant. The final problem on age is solved by adding the time elapsed to the current average. The video ends with a "THANKS FOR WATCHING" screen over a blue, digital background.

The video provides a clear, step-by-step tutorial on solving average problems by leveraging the properties of averages. The core concept demonstrated is that the average of a set of numbers is directly affected by uniform changes to all the numbers in the set. The instructor uses a consistent method: first, identify the relationship between the original and new sets of numbers (e.g., each is 2 more, 3 less, or 4 times the original), and then apply the corresponding change to the given average. This approach is shown to be efficient and reliable for a variety of problem types, including direct calculation, scaling, and real-world applications like age problems. The progression from simple addition/subtraction to multiplication demonstrates a logical expansion of the concept.

Loading lesson…