Board paper

Introduction to Computing and Information Technology 2023 Board Question Paper

ITM 101 · Introduction to Computing and Information Technology

Programme
BITM / BIM
Academic year
Semester 1
Exam year
2023 AD
Sitting
regular
Full marks
60
Duration
180 minutes

Tribhuvan University

Faculty of Management

Office of the Dean

2023 AD / Regular Examination

Course: ITM 101 · Introduction to Computing and Information Technology

Level: Bachelor of Information Technology Management (BITM / BIM) (BITM / BIM) · Semester 1

Full Marks: 60

Time: 3 hrs.

Time: 3 Hrs. | Full Marks: 60 | Pass Marks: 30

Subjective Questions

  1. Define analog computer.

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    Definition of Analog Computer

    An analog computer is a type of computer that processes continuous physical data (such as electrical voltage, hydraulic pressure, fluid dynamics, or temperature) rather than discrete binary digital pulses (00 and 11). They solve differential equations and simulate dynamic physical phenomena in real time.

  2. List out any three types of information system.

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    Three Types of Information Systems

    1. Transaction Processing System (TPS): Records routine daily operational transactions at the foundational business level (e.g., ATM withdrawals, supermarket POS billing).
    2. Management Information System (MIS): Generates structured periodic summary reports for middle-level managers to track operational performance.
    3. Executive Support System (ESS): Provides high-level strategic dashboards, trend analysis, and external intelligence for senior corporate executives.
  3. Differentiate between magnetic tape and magnetic disk.

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    Magnetic Tape vs. Magnetic Disk

    Feature Magnetic Tape Magnetic Disk (HDD)
    Access Method Sequential Access only (must scan tape linearly). Direct / Random Access (read/write head jumps directly to sector).
    Access Latency High (very slow retrieval). Low (milliseconds).
    Primary Use Case Cold archival backup of massive historical datasets. Secondary online storage for active files, OS, and applications.
  4. Define application software.

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    Definition of Application Software

    Application Software is a class of computer programs designed to perform specific user-oriented tasks, workflows, or productivity functions.

    • Examples: Word processors (MS Word), spreadsheets (MS Excel), database frontends, web browsers (Chrome), and media editing software.
  5. What is network topology?

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    Definition of Network Topology

    Network Topology refers to the schematic geometric arrangement or physical and logical layout of interconnected nodes (computers, servers, switches) and communication links in a computer network (e.g., Star, Bus, Ring, Mesh, Hybrid).

  6. Why Green Computing is required?

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    Why Green Computing is Required

    1. Mitigating Environmental Impact: Rapid turnover of computing hardware generates millions of tons of hazardous electronic waste containing mercury, lead, and cadmium.
    2. Reducing Carbon Footprint and Operational Energy Costs: Massive global datacenters consume enormous amounts of electricity; energy-efficient designs curb greenhouse emissions and utility bills.
  7. What is cloud database?

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    What is a Cloud Database?

    A Cloud Database is a database management service deployed, operated, and accessed over a cloud computing platform (e.g., AWS Aurora, Google Firestore, Azure SQL), offering on-demand elastic scalability, automated backups, and multi-region high availability without requiring local physical server maintenance.

  8. Differentiate between JPEG and GIF file format.

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    JPEG vs. GIF File Formats

    Feature JPEG (Joint Photographic Experts Group) GIF (Graphics Interchange Format)
    Color Depth 24-bit True Color (16.7 million colors). 8-bit Indexed Color (maximum 256 colors).
    Compression Lossy compression algorithm (ideal for photographs). Lossless LZW compression (ideal for line art/logos).
    Animation Does not support animation. Fully supports frame-based animation loops.
  9. Differentiate between virus and worm.

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    Difference Between Virus and Worm

    Feature Computer Virus Computer Worm
    Host Requirement Requires a host file or executable program to attach itself to; requires human action to execute. Self-contained, standalone malware that requires no host file.
    Propagation Spreads when infected files are shared or executed by users. Autonomously replicates and spreads across computer networks by exploiting system vulnerabilities.
  10. Why FTP is used?

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    Why FTP is Used

    File Transfer Protocol (FTP) is an application-layer network protocol used to transfer computer files reliably between a client and a server across TCP/IP networks.

    • Common Uses: Uploading website files to web hosting servers, downloading large software installations, and transferring bulk datasets between corporate branches.
  11. Explain the various component of Computer System.

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    Components of a Computer System

    ┌─────────────────────────────────────────────────────────────┐
    │                       CENTRAL PROCESSING UNIT               │
    │  ┌──────────────────────┐        ┌───────────────────────┐  │
    │  │ Control Unit (CU)    │        │ Arithmetic Logic Unit │  │
    │  └──────────┬───────────┘        └───────────┬───────────┘  │
    │             └────────────────┬───────────────┘              │
    │                              ▼                              │
    │                      Registers & Cache                      │
    └──────────────────────────────┬──────────────────────────────┘
                                   ▲
             ┌─────────────────────┼─────────────────────┐
             ▼                     ▼                     ▼
       Input Devices         Primary Memory        Output Devices
      (Keyboard, Mouse)       (RAM / ROM)        (Monitor, Printer)
    
    1. Input Unit: Hardware devices (keyboard, scanner, microphone) that convert user data into binary signals for the CPU.
    2. Central Processing Unit (CPU):
      • Arithmetic Logic Unit (ALU): Performs mathematical calculations and logical comparisons.
      • Control Unit (CU): Directs and coordinates timing signals for all hardware components.
      • Registers: Ultra-fast internal memory cells for immediate operand storage.
    3. Primary Memory (RAM/ROM): Holds active programs, instructions, and data currently needed by the CPU.
    4. Output Unit: Translates processed binary data into human-comprehensible forms (visual displays, audio, printed reports).
  12. Mention the advantages of search engine with example.

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    Advantages of Search Engines with Examples

    A Search Engine (e.g., Google, Microsoft Bing, DuckDuckGo) is a web-based software tool that crawls, indexes, and retrieves information from the World Wide Web based on user queries.

    Advantages:

    1. Instant Access to Global Knowledge: Indexes billions of web pages, enabling users to locate technical documentation, academic papers, and news in milliseconds.
    2. Advanced Keyword and Algorithmic Relevance: Uses sophisticated algorithms (PageRank, natural language understanding) to deliver precise, relevant results.
    3. Commercial and E-Commerce Discovery: Connects consumers directly with product offerings, local services, and competitive pricing.
    4. Multimedia Content Filtering: Enables targeted searches across images, video tutorials, academic journals, and interactive maps.
  13. How the IT is transforming business? Explain with an example.

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    How IT is Transforming Modern Business

    Information Technology has shifted from a back-office support function to a primary driver of corporate strategy and competitive advantage:

    1. Digital Global Marketplaces: Businesses can launch digital storefronts that sell globally 24/7, eliminating physical real-estate overhead.
    2. Data-Driven Decision Making: Real-time analytics, big-data dashboards, and predictive algorithms enable managers to optimize pricing and inventory with high precision.
    3. Supply Chain Visibility & Automation: Cloud ERP and IoT RFID tracking streamline warehouse logistics and reduce stockouts.
    4. Real-World Example (Ride-Hailing & Logistics):
      • Traditional taxi dispatching was slow and geographically fragmented. Platforms like Pathao and Uber transformed urban transit using real-time GPS tracking, automated dynamic pricing algorithms, and integrated cashless mobile payments.
  14. Explain the Concept of Smart City in brief with its advantages.

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    Concept of Smart City and Its Advantages

    A Smart City is an urban municipality that leverages Information and Communication Technology (ICT), Internet of Things (IoT) sensors, and data analytics to optimize municipal services, improve operational efficiency, and elevate citizens’ quality of life.

    Core Advantages:

    1. Intelligent Traffic & Public Transit: Real-time adaptive traffic signals and GPS tracking on buses reduce congestion and transit delays.
    2. Automated Resource Management: Smart electric grids and automated water leakage detection networks reduce utility waste and operational overhead.
    3. Enhanced Public Safety: Integrated video surveillance, automated emergency response dispatching, and digital disaster warning systems.
    4. Digital Citizen Services: E-portals for municipal permits, tax payments, and public complaint tracking, enhancing civic transparency.
  15. What are the different application area of Database System?

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    Application Areas of Database Systems

    1. Banking and Financial Institutions: Tracking customer accounts, transaction histories, loan management, and real-time ATM reconciliations.
    2. Airlines and Railway Systems: Managing flight schedules, real-time ticket reservations, passenger seat assignments, and baggage tracking.
    3. E-Commerce and Retail: Cataloging millions of product inventory SKUs, customer shopping carts, billing, and customer reviews.
    4. Healthcare and Hospital Management: Storing electronic medical records (EMR), prescription histories, and surgical schedules.
    5. Telecommunications: Recording call detail records (CDR), monthly billing cycles, network usage, and subscriber identities.
  16. Briefly Explain any three types of Unguided Media.

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    Three Types of Unguided (Wireless) Media

    1. Radio Waves:
      • Characteristics: Frequency range from 3 kHz3\text{ kHz} to 1 GHz1\text{ GHz}. Omnidirectional; waves travel in all directions from the transmitter and can penetrate solid walls.
      • Applications: AM/FM radio broadcasting, cordless phones, and marine communication.
    2. Microwaves:
      • Characteristics: Frequency range from 1 GHz1\text{ GHz} to 300 GHz300\text{ GHz}. Unidirectional line-of-sight propagation; requires parabolic dish antennas aligned toward each other. Cannot penetrate buildings easily.
      • Applications: Terrestrial cellular base-station backhaul, satellite communication, and radar tracking.
    3. Infrared Waves:
      • Characteristics: Frequency range from 300 GHz300\text{ GHz} to 400 THz400\text{ THz}. Very short-range communication; cannot penetrate solid obstacles.
      • Applications: TV and electronics remote controls, short-range peripheral wireless links.
  17. List out the factor that affect the speed of CPU. Explain Various functionalities of CPU.

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    CPU Performance Factors & Core Functionalities

    Factors Affecting CPU Speed:

    1. Clock Speed (GHz): The frequency of cycles per second the processor executes; higher clock speed means more instructions completed per second.
    2. Number of Cores: Multi-core architectures (Dual, Quad, Octa-core) execute multiple instruction threads concurrently.
    3. Cache Memory Size (L1, L2, L3): High-speed SRAM integrated on the CPU die reduces latency in fetching recurring instructions from slower RAM.
    4. Bus Width and Architecture: 64-bit data paths process larger numeric operands in single clock pulses compared to 32-bit buses.

    Core Functionalities of CPU:

    • Instruction Fetching: Reads binary instructions from main memory into the Instruction Register.
    • Decoding: Decodes opcodes into micro-operation control signals.
    • Execution: ALU processes arithmetic and logical operations on register operands.
    • Writing Back: Stores calculation results back into internal registers or main memory.
  18. Explain any three contemporary technologies that can be used for improving business performance.

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    Three Contemporary Technologies Improving Business Performance

    1. Cloud Computing (IaaS, PaaS, SaaS): Eliminates heavy upfront capital investments in physical servers; businesses scale computing and storage resources dynamically on-demand, enabling agility.
    2. Artificial Intelligence and Machine Learning (AI/ML): Automates customer interactions through intelligent conversational agents, personalizes marketing, and optimizes supply chain forecasting.
    3. Robotic Process Automation (RPA): Software bots automate repetitive, rule-based clerical workflows (invoice processing, payroll entry, compliance checking), minimizing human errors and cycle times.
  19. Explain any five function of operating system.

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    Five Key Functions of an Operating System

    1. Process Management: Allocates CPU time across concurrent tasks, tracks process states, and manages inter-process communication.
    2. Memory Management: Dynamically tracks every byte of RAM, allocating blocks to running programs and reclaiming them upon termination.
    3. File System Management: Organizes physical disk blocks into structured files, directories, and access-permission hierarchies.
    4. Input/Output (I/O) Device Management: Coordinates device communication using specialized device drivers and interrupt buffers.
    5. Protection and Security: Authenticates user credentials, isolates process memory spaces, and protects sensitive system files from malicious tampering.
  20. Explain the importance of multimedia in business today with example.

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    Importance of Multimedia in Business Today

    Multimedia integrates rich media elements (graphics, audio, video, interactive animation) into business workflows:

    • Higher Customer Engagement: Video marketing captures consumer attention far longer than static text, yielding higher conversion rates on social platforms.
    • Virtual Demonstrations: Enables customers to inspect 3D interactive models of products (e.g., real estate walkthroughs, vehicle customizers), accelerating purchasing decisions.
    • Internal Knowledge Sharing: Rich video tutorials and interactive simulations standardize onboarding across globally dispersed corporate branches.
  21. How authorization is different from Authentication? Explain different methods that can be used to prevent unauthorized use and access.

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    Authentication vs. Authorization & Access Prevention Controls

    Basis Authentication Authorization
    Question Asked “Who are you?” (Verifying Identity) “What are you permitted to do?” (Verifying Permissions)
    Process Validates user credentials (passwords, OTP, biometric scans). Evaluates access control lists (ACL) or role-based policies after identity is verified.
    Occurrence Occurs first. Occurs only after successful authentication.

    Methods to Prevent Unauthorized Access:

    1. Multi-Factor Authentication (MFA): Requires at least two distinct authentication factors (password + smartphone authenticator token/biometrics).
    2. Role-Based Access Control (RBAC): Restricts employee data access strictly to the minimum permissions necessary for their specific job role (Principle of Least Privilege).
    3. Network Firewalls and Intrusion Prevention Systems (IPS): Inspects incoming and outgoing network packets, blocking unauthorized connection requests.
  22. Differentiate Primary and Secondary Memory. “Different types of Primary memory has own role in computer system”. Justify the statement with counter example.

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    Primary vs. Secondary Memory & Distinct Roles of Primary Memory

    Feature Primary Memory (RAM / ROM) Secondary Memory (SSD / HDD)
    CPU Access Directly accessed by the CPU via the system bus. Inactive; accessed indirectly through I/O controllers and cached in RAM.
    Volatility RAM is volatile (lost upon power down); ROM is non-volatile. Non-volatile (persists data permanently).
    Speed Extremely fast (nanoseconds access latency). Slower (milliseconds to microseconds).

    Justification: Distinct Roles of Different Primary Memory Types:

    • RAM (Random Access Memory): Provides read-write volatile working space for active OS processes and running applications.
    • ROM (Read Only Memory): Non-volatile firmware holding boot instructions (BIOS/UEFI); cannot be substituted by RAM because RAM is blank at power-on.
    • Cache Memory: Small, ultra-fast SRAM on the CPU die storing frequently accessed memory blocks, bridging the performance gap between the CPU and main RAM.