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Which of the following type of computer is mostly used for automatic operations?
  • a)
    analog
  • b)
    digital
  • c)
    hybrid
  • d)
    remote
  • e)
    mainframe
Correct answer is option 'C'. Can you explain this answer?

Tanishq Shah answered
Automatic Operations and Computer Types

Automatic operations refer to tasks or processes that are performed by a computer system without human intervention. These tasks are typically repetitive, time-consuming, and require high precision. To carry out such operations, computers are designed to handle a variety of tasks, and different types of computers are used based on the specific requirements of the operations.

Types of Computers

There are several types of computers available, each with its own characteristics and capabilities. The most commonly used types of computers include analog computers, digital computers, hybrid computers, remote computers, and mainframe computers.

Analog Computers

- Analog computers are designed to process continuous data and perform calculations using physical quantities such as voltage, current, and resistance.
- They are best suited for tasks that involve mathematical modeling or simulations, such as weather forecasting or fluid dynamics.
- However, they are not commonly used for automatic operations as they are limited in their ability to handle discrete data and lack the precision and accuracy required for many modern applications.

Digital Computers

- Digital computers are the most widely used type of computer for automatic operations.
- They process discrete data in the form of binary digits (bits) and perform calculations using digital logic circuits.
- Digital computers are highly versatile and can be programmed to perform a wide range of tasks, from simple arithmetic operations to complex data analysis and simulations.
- They are commonly used in industries such as manufacturing, finance, healthcare, and telecommunications for tasks such as data processing, control systems, and automation.

Hybrid Computers

- Hybrid computers combine the capabilities of both analog and digital computers.
- They are used in applications that require both continuous and discrete data processing.
- Hybrid computers are commonly used in scientific research, engineering design, and real-time control systems.
- While they can be used for automatic operations, their utilization is relatively limited compared to digital computers.

Remote Computers

- Remote computers, also known as networked computers, are computers that are connected to a central server or mainframe computer.
- They are used to access and process data stored on the central server or to perform tasks remotely.
- Remote computers are commonly used in offices, schools, and other organizations to access shared resources, collaborate on projects, and perform various tasks.
- While they can be used for automatic operations, their primary function is to facilitate remote access and data sharing rather than autonomous task execution.

Mainframe Computers

- Mainframe computers are powerful computers that are designed to handle large-scale computing tasks and process massive amounts of data.
- They are commonly used in organizations that require high-speed processing and data storage capabilities, such as banks, airlines, and government agencies.
- Mainframe computers are well-suited for automatic operations as they can handle complex calculations, manage multiple tasks simultaneously, and support a large number of users.
- They are often used for tasks such as transaction processing, data analysis, and batch processing.

Conclusion

While all the types of computers mentioned above can be used for automatic operations to some extent, hybrid computers and remote computers have relatively limited utilization in this regard. Digital computers, especially mainframe computers, are the most commonly used type for performing automatic operations due to their versatility, processing power, and ability to handle large-scale tasks efficiently.

Number crunchier is the informal name for _______.
  • a)
    Mainframe Computer
  • b)
    Super computer
  • c)
    Hybrid Computer
  • d)
    Digital computer
  • e)
    Analog Computer
Correct answer is option 'B'. Can you explain this answer?

Ishita Nair answered
Supercomputer
Supercomputers are often referred to as "number crunchers" because of their ability to perform complex calculations and process large amounts of data at incredibly high speeds. Here's why the informal name "number cruncher" is commonly associated with supercomputers:

Processing Power
- Supercomputers have immense processing power, allowing them to crunch numbers and solve complex mathematical equations much faster than other types of computers.
- They are designed to handle massive amounts of data and perform calculations that would be practically impossible for an average computer to complete in a reasonable amount of time.

Specialized Tasks
- Supercomputers are used for specialized tasks such as weather forecasting, climate modeling, scientific research, and simulations.
- These tasks require heavy number crunching capabilities, which is why supercomputers are the preferred choice due to their speed and efficiency.

High Performance
- Supercomputers are built with high-performance components and advanced technologies to deliver optimal speed and efficiency.
- They are specifically designed to handle demanding computational tasks, making them the ideal choice for applications that require intense number crunching capabilities.
In conclusion, supercomputers are often called "number crunchers" due to their exceptional processing power, speed, and ability to handle complex calculations and data-intensive tasks with ease.

______________ are used for solving complex application such as Global Weather Forecasting.
  • a)
    Super Computers
  • b)
    Public computers
  • c)
    Mobile computers
  • d)
    Hybrid computers
  • e)
    Digital computers
Correct answer is option 'A'. Can you explain this answer?

Anirban Mehta answered
Super Computers for Global Weather Forecasting

Super Computers are essential tools for solving complex applications such as Global Weather Forecasting due to their high processing power and capabilities. Here are some reasons why they are used for this purpose:

- Processing Power: Super Computers have immense processing power, allowing them to handle large amounts of data and complex calculations required for weather forecasting models.

- High Performance: These computers are designed to perform tasks at a much higher speed compared to other types of computers, enabling quick and accurate weather predictions.

- Parallel Processing: Super Computers are equipped with multiple processors that can work together simultaneously, making them ideal for running weather simulation models in parallel.

- Advanced Algorithms: They can run sophisticated algorithms and simulations to predict weather patterns with precision, taking into account various factors such as wind speed, temperature, and pressure.

- Data Analysis: Super Computers can analyze vast amounts of data from different sources, including satellites and weather stations, to generate accurate forecasts.

In conclusion, Super Computers play a crucial role in Global Weather Forecasting by providing the necessary computational power and resources to process complex weather data efficiently and accurately.

The first supercomputer was installed at Los Alamos National Laboratory of USA and was introduced in 1976. What was its name?
  • a)
    Altair
  • b)
    Cray-1
  • c)
    Z1
  • d)
    Tital-1
  • e)
    None of these
Correct answer is option 'B'. Can you explain this answer?

Sakshi Bose answered
The correct answer is option 'B', Cray-1.

Explanation:
The first supercomputer installed at Los Alamos National Laboratory of USA in 1976 was called Cray-1. Let's delve into the details of this historic supercomputer.

1. Cray-1:
The Cray-1 was a supercomputer designed by Seymour Cray and built by Cray Research Inc. It was one of the most powerful and fastest computers of its time.

2. Features and Specifications:
- Processing Power: The Cray-1 had a peak performance of about 160 megaFLOPS (floating-point operations per second), making it significantly faster than any other computer at the time.
- Vector Processing: It was designed to excel at performing scientific and mathematical calculations using vector processing. This means it could perform operations on entire arrays of data, leading to faster calculations.
- Memory: The Cray-1 had 8 megabytes of memory, which was an impressive capacity during that era.
- Architecture: It featured a unique C-shaped design, with the central processing unit (CPU) and memory modules placed around a central cooling system. This allowed for efficient cooling and reduced the size of the computer.
- Liquid Cooling: The Cray-1 utilized an innovative cooling system that circulated a liquid coolant through copper cooling plates to dissipate heat generated by the powerful processors.

3. Impact and Legacy:
- Pioneering Supercomputing: The Cray-1 revolutionized the field of supercomputing and set the standard for future generations of supercomputers.
- Scientific Applications: It was primarily used for complex scientific simulations, such as nuclear weapons research, weather forecasting, and materials science.
- Architectural Influence: The design principles and innovations introduced in the Cray-1 influenced the development of subsequent supercomputers.
- Successor Models: Cray Research Inc. went on to develop several more powerful and advanced models, building upon the success of the Cray-1.

In conclusion, the first supercomputer installed at Los Alamos National Laboratory of USA in 1976 was the Cray-1. With its exceptional processing power, vector processing capabilities, and innovative design, it laid the foundation for the future of supercomputing.

Analog computer works on the supply of ______.
  • a)
    Continuous electrical pulses
  • b)
    Electrical pulses but not continuous
  • c)
    Magnetic strength
  • d)
    Physical strength
  • e)
    Magnetic impulse
Correct answer is option 'A'. Can you explain this answer?

Maya Kaur answered
Analog computers are a type of computing device that operates by continuously varying physical quantities. These computers work on the supply of continuous electrical pulses.

Analog computers use electrical pulses to represent and manipulate physical quantities such as voltage, current, and resistance. These electrical pulses are continuous and can vary in magnitude and duration. The continuous nature of the electrical pulses allows analog computers to perform calculations in real-time, making them suitable for tasks that require fast and continuous processing.

Analog computers utilize various components such as resistors, capacitors, and operational amplifiers to create circuits that can perform mathematical operations. These circuits can add, subtract, multiply, and divide electrical quantities, allowing the computer to solve equations and perform complex calculations.

The continuous electrical pulses in an analog computer are typically generated by a power supply that provides a stable and continuous source of electrical energy. This power supply ensures that the electrical pulses remain constant and uninterrupted, allowing the computer to perform calculations accurately.

Analog computers are particularly useful in applications that involve physical systems and phenomena, such as simulations, control systems, and scientific experiments. They can model and simulate real-world processes by accurately representing the continuous variables and relationships involved.

In contrast to analog computers, digital computers operate using discrete values or binary digits (bits) that represent information. Digital computers use binary logic and perform calculations using discrete steps, making them more suitable for tasks that involve discrete data and logic operations.

In conclusion, analog computers work on the supply of continuous electrical pulses. These continuous pulses enable analog computers to perform real-time calculations and accurately model physical systems and phenomena.

A hybrid computer is the one having the combined properties of  ________.
  • a)
    Digital and microcomputers
  • b)
    Super and microcomputers
  • c)
    Analog and digital computers
  • d)
    Super and mini computers
  • e)
    Mini and microcomputers
Correct answer is option 'C'. Can you explain this answer?

Surbhi Joshi answered
Analog and Digital Computers

A hybrid computer is a type of computer that combines the features and capabilities of both analog and digital computers. It is designed to take advantage of the strengths of both types of computers, allowing it to perform a wide range of tasks efficiently.

Analog Computers:
Analog computers are designed to process continuous data and perform calculations using physical quantities such as voltage, current, and resistance. They are well-suited for tasks that involve real-time data processing and simulations. Analog computers can handle complex mathematical equations and solve differential equations, making them useful in scientific research, engineering, and control systems.

Digital Computers:
Digital computers, on the other hand, process discrete data and perform calculations using binary digits (bits). They are capable of executing complex algorithms and performing high-speed calculations. Digital computers are widely used in various applications, including data processing, information storage, and general-purpose computing.

Combining Analog and Digital Capabilities:
By combining the properties of both analog and digital computers, a hybrid computer can handle a broader range of tasks effectively. It can process both continuous and discrete data, making it suitable for applications that require real-time data acquisition and processing, as well as complex calculations.

Applications of Hybrid Computers:
Hybrid computers have applications in various fields, including:

1. Weather Forecasting: Hybrid computers can process real-time weather data obtained from analog sensors and perform complex mathematical calculations to predict weather patterns accurately.

2. Medical Imaging: Hybrid computers can process analog signals from medical imaging devices such as X-ray machines and convert them into digital images for analysis and diagnosis.

3. Simulation and Modeling: Hybrid computers are used in the field of simulation and modeling to replicate real-world scenarios and analyze their behavior accurately.

4. Control Systems: Hybrid computers can be used in control systems to monitor analog signals from sensors and perform digital calculations to control actuators and devices.

Overall, a hybrid computer combines the strengths of analog and digital computers to provide a versatile computing solution capable of handling a wide range of tasks efficiently. Its ability to process both continuous and discrete data makes it valuable in various fields, including scientific research, engineering, and control systems.

What was the first fully electronic computer in the world?
  • a)
    EDSAC
  • b)
    UNIVAC
  • c)
    ENIAC
  • d)
    Z1
  • e)
    MARK1
Correct answer is option 'C'. Can you explain this answer?

Kavya Saxena answered
The first programmable general-purpose electronic digital computer was created by the US during World War II and is known as ENIAC, or Electronic Numerical Integrator and Computer.

The ____________ computers are high-performance computers with large amounts of memory and processors that process billions of simple calculations and transactions in real-time.
  • a)
    Nano computer
  • b)
    Mini computer
  • c)
    Mainframe computer
  • d)
    Super computer
  • e)
    Embedded Computer
Correct answer is option 'C'. Can you explain this answer?

Aarav Sharma answered
Explanation:

Mainframe computers are high-performance computers with large amounts of memory and processors that process billions of simple calculations and transactions in real-time. These computers are often used in large organizations such as banks, government agencies, and research institutions.

Key Points:
- High-performance computers: Mainframe computers are designed to handle large amounts of data and process complex calculations quickly and efficiently.
- Large amounts of memory: Mainframes have a significant amount of memory, allowing them to store and access large volumes of data.
- Processors: Mainframe computers are equipped with powerful processors that can handle multiple tasks simultaneously.
- Real-time processing: Mainframes are capable of processing data in real-time, meaning that they can handle transactions and calculations as they occur.
- Billions of simple calculations and transactions: Mainframes are designed to handle a large number of simple calculations and transactions efficiently. This makes them ideal for tasks such as processing financial transactions or running complex simulations.
- Used in large organizations: Mainframes are commonly used in large organizations that require high-performance computing capabilities. These organizations rely on mainframes to handle their critical business operations and ensure smooth and efficient processing of data.

Conclusion:
Mainframe computers are high-performance machines that are capable of processing large amounts of data and performing complex calculations in real-time. They are widely used in large organizations that require efficient and reliable computing capabilities.

Which of the following organization developed a SAGA-220 supercomputer in 2011?
  • a)
    DRDO
  • b)
    NASA
  • c)
    BARC
  • d)
    ISRO
  • e)
    C-DAC
Correct answer is option 'D'. Can you explain this answer?

Nikita Singh answered
The Indian Space Research Organization (ISRO) constructed the supercomputer known as SAGA-220 (Supercomputer for Aerospace with GPU Architecture-220 Teraflops).
Dr. K. Radhakrishnan, the ISRO Chairman, unveiled it on May 2, 2011. It is no longer the fastest supercomputer in India as of January 8, 2018, having been eclipsed by the Pratyush supercomputer, which has a theoretical maximum speed of 220 TFlops.

What is the other name for Desktop and personal computers?
  • a)
    Microcomputers
  • b)
    Supercomputers
  • c)
    Minicomputers
  • d)
    Mainframe computers
  • e)
    Hybrid computers
Correct answer is option 'A'. Can you explain this answer?

Rahul Mehta answered
A single chip (microprocessor) serves as the central processing unit in a PC or microcomputer (CPU). A PC is now the most common type of "microcomputer," but it can also apply to any other small computer, including a desktop computer, laptop computer, tablet, smartphone, or wearable.

______ is a portable microcomputer having its main components (such as processor, keyboard, and a display screen) integrated into a single unit capable of battery-powered operation.
  • a)
    Mainframe Computer
  • b)
    Laptop
  • c)
    Super Computers
  • d)
    Micro Computers
  • e)
    Nano Computers
Correct answer is option 'B'. Can you explain this answer?

Tarun Nambiar answered
Definition of a Laptop:
A laptop is a portable microcomputer that integrates its main components, such as a processor, keyboard, and display screen, into a single unit. It is designed for battery-powered operation, making it convenient for users to carry and use it on the go.

Key Features of a Laptop:
- Portability: Laptops are compact and lightweight, making them easy to carry around.
- Integrated Components: All essential components are housed within a single unit, eliminating the need for external peripherals.
- Battery-Powered: Laptops are designed to operate on battery power, allowing users to use them without being tethered to a power source.

Uses of Laptops:
- Work: Laptops are commonly used for work purposes, allowing users to perform tasks such as word processing, email, and internet browsing.
- Entertainment: Laptops are also used for entertainment purposes, such as watching movies, playing games, and listening to music.
- Education: Laptops are widely used in educational settings for research, online learning, and collaboration.
In conclusion, a laptop is a versatile and convenient computing device that offers portability, integrated components, and battery-powered operation. Its compact design and functionality make it a popular choice for various tasks and activities.

A supercomputer is a computer with a high level of performance compared to a general-purpose computer. Which of the following is the world’s first supercomputer invented in 1976?
  • a)
    Pratyush
  • b)
    PARAM Siddhi
  • c)
    CRAY-1
  • d)
    Fugaku
  • e)
    PARAM
Correct answer is option 'C'. Can you explain this answer?

Surbhi Sen answered
CRAY-1
The world's first supercomputer invented in 1976 was the CRAY-1.

Key Points:
- The CRAY-1 was developed by American engineer Seymour Cray and his team at Cray Research.
- It was the first supercomputer to use vector processing, which allowed it to perform calculations on multiple data elements simultaneously.
- The CRAY-1 was known for its distinctive C-shaped design and was one of the fastest computers of its time.
- It had a peak performance of around 250 megaflops (million floating-point operations per second) and was used for a variety of scientific and engineering applications.
- The CRAY-1 paved the way for the development of more powerful supercomputers in the following decades.

Tablet PC is a type of _______ computer.
  • a)
    Micro Computer
  • b)
    Mini Computer
  • c)
    Mainframe Computer
  • d)
    Embedded Computer
  • e)
    Nano Computer
Correct answer is option 'A'. Can you explain this answer?

Aarav Sharma answered
Tablet PC is a type of Micro Computer.

Explanation:
A tablet PC is a portable computing device that combines the features of a laptop and a smartphone. It is designed to be operated primarily by touching the screen with a stylus or finger. Tablet PCs are smaller and more lightweight compared to traditional desktop or laptop computers.

Micro Computer:
A microcomputer, also known as a personal computer (PC), is a small, relatively inexpensive computer with a microprocessor as its central processing unit (CPU). Microcomputers are designed for individual use and are commonly used for personal and business purposes. They are compact, portable, and suitable for everyday tasks such as web browsing, word processing, and multimedia playback.

Tablet PC as a Micro Computer:
A tablet PC falls under the category of microcomputers because it is a small, portable device that uses a microprocessor as its CPU. It is designed for individual use and offers similar functionalities to that of a traditional PC. However, the main difference lies in the form factor and interface. Tablet PCs have a touchscreen interface, allowing users to interact with the device directly through gestures and taps on the screen.

Advantages of Tablet PCs:
1. Portability: Tablet PCs are lightweight and compact, making them easy to carry around.
2. Touchscreen Interface: The intuitive touchscreen interface makes it easy to navigate and interact with the device.
3. Multi-functionality: Tablet PCs can be used for various purposes, including web browsing, email, media consumption, and productivity tasks.
4. Long Battery Life: Tablet PCs often have better battery life compared to traditional laptops, allowing for extended usage without the need for frequent charging.
5. Pen Input: Many tablet PCs come with a stylus or pen input, enabling users to write, draw, and take notes directly on the screen.

Conclusion:
Tablet PCs are classified as microcomputers due to their small size, microprocessor-based architecture, and individual use. These devices offer portability, touchscreen interfaces, and multi-functionality, making them popular choices for on-the-go computing and entertainment.

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