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Test: Input & Output Devices- 2 - Class 9 MCQ


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15 Questions MCQ Test - Test: Input & Output Devices- 2

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Test: Input & Output Devices- 2 - Question 1

OMR, OCR, and MICR are all types of :

Detailed Solution for Test: Input & Output Devices- 2 - Question 1
OMR, OCR, and MICR are all types of character and mark recognition devices.
OMR (Optical Mark Recognition)
- OMR is a technology used to detect and analyze marked fields on documents.
- It is commonly used in surveys, exams, and questionnaires.
- OMR devices scan the document and detect the presence or absence of marks in predefined areas.
- It can quickly process large volumes of documents, saving time and effort.
OCR (Optical Character Recognition)
- OCR is a technology used to convert printed or handwritten text into machine-readable text.
- It can recognize and extract characters from scanned documents, images, or text files.
- OCR software analyzes the text and converts it into editable and searchable formats.
- It is widely used in data entry, document management, and text-to-speech applications.
MICR (Magnetic Ink Character Recognition)
- MICR is a technology used for processing checks and other financial documents.
- It uses special ink containing iron oxide particles that are magnetizable.
- MICR devices read the magnetic ink characters printed on the bottom of checks.
- It ensures accurate and efficient processing of checks by banks and financial institutions.
In conclusion, OMR, OCR, and MICR are all types of character and mark recognition devices used for different purposes such as detecting marked fields, converting printed text into machine-readable format, and processing financial documents.
Test: Input & Output Devices- 2 - Question 2

The most widely used audio-input device is the

Detailed Solution for Test: Input & Output Devices- 2 - Question 2
The most widely used audio-input device is the
Microphone:
- The microphone is the most widely used audio-input device.
- It is designed to capture sound waves and convert them into electrical signals.
- Microphones are used in various applications such as recording studios, live performances, telecommunication devices, and computer systems.
- They come in different types including dynamic, condenser, ribbon, and lavalier microphones.
- Dynamic microphones are robust and can handle high sound pressure levels, making them suitable for live performances and recording loud instruments.
- Condenser microphones are more sensitive and offer a wider frequency response, making them ideal for studio recordings and capturing vocals.
- Ribbon microphones are known for their smooth and warm sound reproduction, often used in broadcasting and studio settings.
- Lavalier microphones are small and can be clipped onto clothing, commonly used in presentations, interviews, and broadcasting.
- Microphones can be connected to various devices such as computers, audio interfaces, mixers, and wireless systems.
- They are essential for recording audio, conducting voice calls, video conferencing, podcasting, and many other applications.
In summary, the microphone is the most widely used audio-input device due to its versatility and ability to capture sound accurately in various settings and applications.
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Test: Input & Output Devices- 2 - Question 3

These are the most widely used monitors today.

Detailed Solution for Test: Input & Output Devices- 2 - Question 3
Most widely used monitors today:

  • Flat-panel monitors: Flat-panel monitors are the most commonly used monitors in today's market. These monitors use LCD or LED technology to produce high-quality images. They are slim, lightweight, and offer a space-saving design.

  • CRT monitors: CRT monitors, also known as cathode ray tube monitors, were widely used in the past but have been largely replaced by flat-panel monitors. They are bulky and heavy, but they offer good color accuracy and high contrast ratios.

  • Projector monitors: Projector monitors are commonly used in conference rooms, classrooms, and home theaters. These monitors project images onto a screen or wall, providing a large display size. They are versatile and can be easily connected to various devices.

  • E-book readers: While e-book readers are popular for reading electronic books, they are not typically considered as monitors. E-book readers use e-ink technology to display text and are designed specifically for reading purposes.


Conclusion: Among the options given, flat-panel monitors are the most widely used monitors today due to their slim design, high image quality, and widespread availability in the market. CRT monitors, projector monitors, and e-book readers have their own specific uses and may not be as commonly used as flat-panel monitors in general computing and entertainment purposes.
Test: Input & Output Devices- 2 - Question 4

______ is an input device which which converts images as digital formats.

Detailed Solution for Test: Input & Output Devices- 2 - Question 4
Answer:
The input device that converts images into digital formats is a Scanner. Here is a detailed explanation:
Scanner:
- A scanner is an input device that captures images or documents and converts them into digital formats.
- It uses optical technology to scan the image or document and convert it into a series of digital data.
- The scanned image can be saved as a file on a computer or printed using a printer.
- Scanners are commonly used in various fields such as photography, graphic design, document management, and more.
- They are available in different types, including flatbed scanners, handheld scanners, and document scanners.
- Scanners can capture images with high resolutions and color depths, making them suitable for preserving and reproducing detailed images.
Laser Printer:
- A laser printer is an output device that produces high-quality prints by using laser technology.
- It takes digital data from a computer and prints it onto paper or other print media.
- Laser printers do not convert images into digital formats; instead, they generate physical copies of digital documents.
Both are reliable:
- This option is incorrect because both a scanner and a laser printer serve different purposes and cannot be compared as input devices for converting images into digital formats.
None of the above:
- This option is also incorrect as the correct answer is a scanner.
In conclusion, a scanner is the input device that converts images into digital formats. It captures images or documents using optical technology and converts them into a series of digital data. Laser printers, on the other hand, are output devices that produce physical copies of digital documents.
Test: Input & Output Devices- 2 - Question 5

The purpose of input device is to ______.

Detailed Solution for Test: Input & Output Devices- 2 - Question 5
The purpose of an input device is to pass information.
Input devices are hardware devices that allow users to input data and commands into a computer system. They play a crucial role in the overall functioning and usability of a computer system. The main purpose of an input device is to pass information from the user to the computer system. Here are some key points to explain this in detail:
1. Definition: An input device is any hardware device that allows users to input data or commands into a computer system. Examples of input devices include keyboards, mice, touchscreens, scanners, and microphones.
2. Data entry: Input devices are used to enter data into a computer system. Users can type on a keyboard, move a mouse, or touch a touchscreen to input information. This data can be in the form of text, numbers, or commands.
3. Communication: Input devices facilitate communication between the user and the computer system. They allow users to express their intentions, provide instructions, or interact with applications and software.
4. Transferring information: Input devices pass the information entered by the user to the computer system. This information is then processed by the central processing unit (CPU) and used for various purposes such as executing commands, performing calculations, or displaying output.
5. Interaction: Input devices enable users to interact with computer systems, applications, and software. They provide a means for users to control and navigate through the digital environment.
6. Enhancing usability: Input devices are designed to enhance the usability and accessibility of computer systems. They provide different options and functionalities to cater to the diverse needs and preferences of users.
In conclusion, the purpose of an input device is to pass information from the user to the computer system. It enables data entry, communication, and interaction, ultimately enhancing the usability and functionality of the computer system.
Test: Input & Output Devices- 2 - Question 6

The following are the input devices

Detailed Solution for Test: Input & Output Devices- 2 - Question 6
The input devices are:

  • Keyboard

  • Mouse

  • Scanner

  • Flatbed scanner


Explanation:
The input devices mentioned in option C are the correct ones. Let's break it down further:
Keyboard: A keyboard is an input device that allows the user to input alphanumeric characters.
Mouse: A mouse is a pointing device that allows the user to move the cursor on the screen and perform various functions by clicking buttons.
Scanner: A scanner is a device that converts physical documents or images into digital format, which can then be stored or manipulated on a computer.
Flatbed scanner: A flatbed scanner is a type of scanner that uses a flat surface to scan documents or images. It is commonly used for scanning books, photos, or documents with odd shapes.
Therefore, the correct answer is option C, which includes all the mentioned input devices.
Test: Input & Output Devices- 2 - Question 7

Where engineering applications are used and precision is mandatory, we use ______ for printing.

Detailed Solution for Test: Input & Output Devices- 2 - Question 7
Engineering Applications and Precision Printing:


When engineering applications require precision printing, specific printing methods are used. These printing methods are designed to ensure accuracy and high-quality output. Let's discuss the different options:


Laser Printing:
- Laser printers are commonly used in engineering applications that require precision.
- These printers use laser technology to produce high-resolution prints with sharp and clear details.
- Laser printing offers precise control over the print output and is suitable for complex engineering diagrams, technical drawings, and architectural plans.
- The prints produced by laser printers are durable and resistant to smudging or fading.
Electrostatic Plotter:
- Electrostatic plotters are another option for precision printing in engineering applications.
- These plotters use an electrostatic charge to transfer toner onto the paper, creating detailed and accurate prints.
- Electrostatic plotters are capable of producing large-scale prints and are commonly used for architectural plans, maps, and other engineering designs.
- The prints produced by electrostatic plotters have high resolution and excellent line definition.
Pen Plotter:
- Pen plotters were widely used in engineering applications before the advent of laser printers.
- These plotters use a pen or a set of pens to physically draw lines on the paper.
- Pen plotters are capable of producing precise and accurate prints, especially when it comes to line quality and thickness.
- However, they are slower compared to other printing methods and may not be suitable for high-volume printing.
None of the Above:
- The option "None of the above" suggests that there may be other printing methods that are used in engineering applications where precision is mandatory.
- It is possible that advancements in printing technology have introduced new methods that are specific to certain engineering fields.
In conclusion, when precision is mandatory in engineering applications, options such as laser printing, electrostatic plotters, and pen plotters are commonly used. However, it is important to stay updated with the latest advancements in printing technology to ensure the most suitable printing method is chosen for specific engineering requirements.
Test: Input & Output Devices- 2 - Question 8

______ is any data or instructions sent to the computer.

Detailed Solution for Test: Input & Output Devices- 2 - Question 8
Input is any data or instructions sent to the computer.

Here is a detailed explanation:



  • Definition: Input refers to any data or instructions that are entered into a computer system to be processed.

  • Types of Input: Input can come in various forms, including:


    • Digital: Digital input refers to data or instructions that are in a digital format, such as text, numbers, or binary code.

    • Output: Output refers to the result or response generated by the computer system after processing the input.

    • Information: Information is the meaningful data that is obtained after processing the input.

    • Input: Input is the data or instructions that are provided to the computer system for processing.


  • Example: Examples of input include:


    • Typing text on a keyboard

    • Scanning a barcode

    • Clicking a mouse

    • Using a touchscreen


  • Importance: Input is vital for a computer system as it enables users to interact with the system and provide the necessary data or instructions for processing.


In conclusion, input is any data or instructions that are sent to the computer system for processing. It can be in various forms and is essential for the functioning of the computer system.

Test: Input & Output Devices- 2 - Question 9

This type of keyboard uses a touch screen as the input device.

Detailed Solution for Test: Input & Output Devices- 2 - Question 9

The correct answer is D: Virtual keyboard. Here is a detailed explanation:
Explanation:
A virtual keyboard is a type of keyboard that uses a touch screen as the input device. It is a software-based keyboard that appears on the screen and allows users to input text by tapping on the screen.
Here are the characteristics and features of a virtual keyboard:
- Touch screen: A virtual keyboard uses the touch screen technology to detect and register keystrokes.
- No physical keys: Unlike traditional keyboards, a virtual keyboard does not have physical keys. Instead, it displays a visual representation of a keyboard on the touch screen.
- Customizable layout: Virtual keyboards often allow users to customize the layout according to their preferences. They can adjust the size, arrangement, and appearance of the keys.
- Multi-language support: Virtual keyboards can support multiple languages by providing different keyboard layouts for different languages.
- Portable: Since virtual keyboards are software-based, they can be easily integrated into various devices such as smartphones, tablets, and laptops, making them highly portable.
- No tactile feedback: One of the drawbacks of virtual keyboards is the lack of tactile feedback. Users do not get the physical sensation of pressing keys, which can make typing less comfortable and efficient.
- Gesture support: Some virtual keyboards also support gestures, allowing users to perform actions such as swiping, scrolling, and zooming without leaving the keyboard interface.
- Accessibility features: Virtual keyboards often include accessibility features such as predictive text, autocorrect, and voice input to assist users with disabilities.
Overall, virtual keyboards offer a flexible and convenient input method, especially on devices with touch screens. They eliminate the need for physical keys and provide a customizable and portable typing experience.
Test: Input & Output Devices- 2 - Question 10

This type of mouse is currently the most widely used.

Detailed Solution for Test: Input & Output Devices- 2 - Question 10
Answer:
The most widely used type of mouse currently is the optical mouse. Here is a detailed explanation of why it is the most popular choice:
Advantages of Optical Mouse:
- No moving parts: Optical mice use a light-emitting diode (LED) and a small CMOS sensor to track movement. This eliminates the need for moving parts like the ball and rollers found in mechanical mice, making optical mice more durable and reliable.
- Improved precision: Optical mice track movement with greater accuracy than mechanical mice. The LED illuminates the surface beneath the mouse, and the CMOS sensor captures images of the surface at a high rate. This allows for smooth and precise tracking of movement.
- Less maintenance: Since there are no moving parts to clean or replace, optical mice require less maintenance compared to mechanical mice. This makes them more convenient to use.
- Wireless options: Optical mice are available in both corded and cordless/wireless versions. This gives users the flexibility to choose the option that suits their needs and preferences.
- Compatibility: Optical mice are compatible with a wide range of devices, including desktop computers, laptops, and tablets. They can be connected via USB or Bluetooth, ensuring compatibility with various operating systems.
Overall, the optical mouse's reliability, precision, low maintenance, and compatibility make it the most widely used type of mouse in today's market.
Test: Input & Output Devices- 2 - Question 11

Tablet, PCs and PDAs use a

Detailed Solution for Test: Input & Output Devices- 2 - Question 11
Tablet, PCs and PDAs use a Stylus
Explanation:
Tablets, PCs, and PDAs (Personal Digital Assistants) are electronic devices that are commonly used for various purposes. When it comes to interacting with these devices, they typically utilize a stylus as an input tool. The stylus is a pen-like instrument that allows users to navigate, write, draw, and select items on the screen. It is commonly used for tasks such as:
- Navigating and selecting: The stylus enables users to tap on icons, buttons, or links on the screen to navigate through applications, menus, and websites.
- Writing and drawing: With a stylus, users can write or draw directly on the screen, making it useful for note-taking, digital artwork, or annotations.
- Precision and control: The stylus provides more precision and control compared to finger touch, making it easier to perform tasks that require accuracy, such as editing documents or creating detailed drawings.
- Handwriting recognition: Some devices with stylus support also offer handwriting recognition, allowing users to convert their handwritten notes or text into digital text.
Overall, the stylus enhances the user experience by providing a more precise and versatile input method, especially for tasks that require fine details or handwriting.
Test: Input & Output Devices- 2 - Question 12

Bar code readers use ______ embedded in them to read bar codes.

Detailed Solution for Test: Input & Output Devices- 2 - Question 12
Bar code readers use photoelectric cells embedded in them to read bar codes.
The detailed solution is as follows:
- Bar code readers are electronic devices used to read bar codes, which are representations of data in the form of a series of parallel lines and spaces.
- These devices use various technologies to decode the information encoded in the bar codes.
- One of the key components in bar code readers is the photoelectric cell, which is responsible for reading the bar code.
Explanation:
- Photoelectric cells, also known as photodetectors or light sensors, are electronic devices that convert light energy into electrical signals.
- In bar code readers, the photoelectric cells emit a light beam onto the bar code and detect the reflections or changes in light intensity caused by the dark and light areas of the bar code.
- The photoelectric cells then convert these light variations into electrical signals, which are processed by the reader's electronics to decipher the encoded information.
- This information is then transmitted to a computer or other device for further processing or storage.
Conclusion:
- Bar code readers use photoelectric cells to read bar codes by emitting and detecting light reflections.
- These cells play a crucial role in the accurate and efficient scanning of bar codes, enabling the retrieval of encoded information for various applications such as inventory management, product tracking, and point-of-sale transactions.
Test: Input & Output Devices- 2 - Question 13

Which of the following types of character recognition systems is used for standardized multiple-choice testing?

Detailed Solution for Test: Input & Output Devices- 2 - Question 13
Character Recognition Systems for Standardized Multiple-Choice Testing
The correct answer is OMR (Optical Mark Recognition).
Here is a detailed explanation:
1. UPC (Universal Product Code)
- UPC is a barcode system used for tracking and identifying products in retail settings.
- It is not used for character recognition in multiple-choice testing.
2. MICR (Magnetic Ink Character Recognition)
- MICR is a technology used for recognizing characters printed with magnetic ink.
- It is primarily used in banking for processing checks and other financial documents.
- It is not typically used for standardized multiple-choice testing.
3. OMR (Optical Mark Recognition)
- OMR is a technology used to detect and recognize marks on paper.
- It is commonly used for processing multiple-choice answer sheets in standardized tests.
- OMR systems can scan and analyze the marked bubbles or checkboxes to determine the test taker's response.
- OMR technology is efficient, accurate, and cost-effective for large-scale multiple-choice testing.
4. OCR (Optical Character Recognition)
- OCR is a technology used to convert printed or handwritten text into machine-readable text.
- It is commonly used to digitize documents and extract information from them.
- While OCR can recognize characters, it is not specifically designed for standardized multiple-choice testing.
In conclusion, the type of character recognition system used for standardized multiple-choice testing is OMR (Optical Mark Recognition). OMR technology is specifically designed to detect and analyze marks on paper, making it suitable for processing multiple-choice answer sheets in large-scale testing scenarios.
Test: Input & Output Devices- 2 - Question 14

______ input devices convert sounds into a form that can be processed by the system unit.

Detailed Solution for Test: Input & Output Devices- 2 - Question 14
Answer:

The correct answer is D: Audio.


Input devices are used to convert various forms of data into a format that can be processed by the computer system. In this case, the input devices mentioned are used to convert sounds into a digital format that the system unit can understand and process.


Here is a detailed explanation of each option:


A: Electrolyzing
- Electrolyzing is not an input device. It is a chemical process that uses an electric current to drive a non-spontaneous chemical reaction.
- It is not related to converting sounds into a form that can be processed by the system unit.
B: Plotting
- Plotting is a method of producing graphical representations of data.
- It is not an input device used for converting sounds.
C: Web Cam
- A web cam is a video camera that captures and transmits video in real-time over the internet.
- Although some web cams may have built-in microphones for capturing sound, they are primarily used for video input and not specifically designed for converting sounds into a form that can be processed by the system unit.
D: Audio
- Audio input devices are specifically designed to convert sounds into a form that can be processed by the system unit.
- Examples of audio input devices include microphones, headsets, and audio interfaces.
- These devices capture analog sound waves and convert them into digital signals that can be processed by the computer system.
- The digital signals can then be stored, edited, or played back by the system.
In conclusion, the correct answer is D: Audio. Audio input devices are used to convert sounds into a form that can be processed by the system unit.
Test: Input & Output Devices- 2 - Question 15

The individual dots that form the image on a monitor are called

Detailed Solution for Test: Input & Output Devices- 2 - Question 15
The individual dots that form the image on a monitor are called pixels.
Explanation:
Pixels are the smallest units of an image on a monitor. Each pixel is a tiny dot that emits light and combines with other pixels to form the complete image on the screen. Here is a detailed explanation:
- Definition: Pixels are the building blocks of digital images. They are the individual dots that make up the display on a monitor or screen.
- Composition: Each pixel consists of three sub-pixels, usually red, green, and blue (RGB). The combination of these sub-pixels in different intensities creates the full range of colors that can be displayed on the screen.
- Resolution: The resolution of a monitor refers to the total number of pixels it can display. Higher resolutions mean more pixels are packed into the screen, resulting in sharper and more detailed images.
- Pixel Density: Pixel density refers to the number of pixels per inch (PPI) on a screen. Higher pixel density results in a crisper and more detailed image.
- Advancements: With technological advancements, monitors now have higher pixel counts, such as 4K and 8K resolutions, which provide incredibly detailed and lifelike images.
- Importance: The concept of pixels is crucial in digital imaging, including photography, graphic design, and video editing. Understanding how pixels work helps in creating and manipulating images effectively.
In conclusion, pixels are the individual dots that form the image on a monitor. They are the fundamental units of a digital image and play a significant role in determining the resolution, clarity, and detail of the displayed content.
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