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Physics (MHT-CET)

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Q. If the wavelength of light used in a single-slit diffraction experiment is increased, what happens to the width of the central maximum? (2023)
  • A. It decreases
  • B. It increases
  • C. It remains the same
  • D. It becomes zero
Q. If the wavelength of light used in a single-slit diffraction experiment is increased, what will happen to the position of the first minimum? (2022)
  • A. It moves closer to the center
  • B. It moves away from the center
  • C. It remains unchanged
  • D. It disappears
Q. If two charges +Q and -Q are placed at a distance 'd' apart, what is the electric field at the midpoint? (2020)
  • A. 0
  • B. kQ/d^2
  • C. kQ/(2d^2)
  • D. kQ/d
Q. If two identical capacitors of 4 µF each are connected in series, what is the equivalent capacitance?
  • A. 2 µF
  • B. 4 µF
  • C. 6 µF
  • D. 8 µF
Q. If two resistors of 4Ω and 6Ω are connected in series, what is the total resistance? (2023)
  • A. 10Ω
  • B. 24Ω
  • C. 2.4Ω
  • D. 12Ω
Q. If two resistors of 4Ω and 6Ω are connected in series, what is the total voltage across them if the current is 2A? (2022)
  • A. 20V
  • B. 12V
  • C. 8V
  • D. 10V
Q. In a Carnot engine operating between 500 K and 300 K, what is the maximum efficiency of the engine? (2021)
  • A. 40%
  • B. 60%
  • C. 50%
  • D. 20%
Q. In a Carnot engine operating between temperatures of 500 K and 300 K, what is the efficiency of the engine? (2023)
  • A. 40%
  • B. 50%
  • C. 60%
  • D. 70%
Q. In a Carnot engine operating between temperatures of 500 K and 300 K, what is the maximum efficiency? (2023)
  • A. 40%
  • B. 60%
  • C. 50%
  • D. 70%
Q. In a Carnot engine operating between two heat reservoirs at temperatures 500 K and 300 K, what is the maximum efficiency of the engine? (2023)
  • A. 40%
  • B. 60%
  • C. 80%
  • D. 20%
Q. In a circuit with a 24V battery and two 8Ω resistors in series, what is the total current? (2022)
  • A. 1A
  • B. 2A
  • C. 3A
  • D. 4A
Q. In a circuit with a 24V battery and two resistors of 4Ω and 8Ω in parallel, what is the total current supplied by the battery? (2022)
  • A. 3A
  • B. 2A
  • C. 4A
  • D. 6A
Q. In a circuit with a 5Ω and a 10Ω resistor in parallel, what is the total current if the voltage across them is 20V? (2022)
  • A. 4A
  • B. 2A
  • C. 6A
  • D. 8A
Q. In a circuit with a 9V battery and a 3Ω resistor, what is the current flowing through the resistor? (2023)
  • A. 3A
  • B. 2A
  • C. 1A
  • D. 4A
Q. In a circuit with a 9V battery and a 3Ω resistor, what is the power dissipated by the resistor? (2021)
  • A. 3W
  • B. 9W
  • C. 6W
  • D. 12W
Q. In a circuit with a 9V battery and a 3Ω resistor, what is the power dissipated in the resistor? (2023)
  • A. 3W
  • B. 9W
  • C. 6W
  • D. 12W
Q. In a circuit, if the current is doubled while the resistance remains constant, what happens to the power? (2020)
  • A. It doubles
  • B. It quadruples
  • C. It remains the same
  • D. It halves
Q. In a circuit, if the current is doubled while the resistance remains constant, what happens to the power consumed? (2020)
  • A. It doubles
  • B. It triples
  • C. It remains the same
  • D. It halves
Q. In a circuit, if the resistance is halved while the voltage remains constant, what happens to the current? (2022)
  • A. It halves
  • B. It doubles
  • C. It remains the same
  • D. It quadruples
Q. In a circuit, if the voltage is doubled and the resistance remains constant, what happens to the current? (2020)
  • A. Doubles
  • B. Halves
  • C. Remains the same
  • D. Quadruples
Q. In a damped harmonic oscillator, what happens to the amplitude over time? (2023)
  • A. Increases
  • B. Decreases
  • C. Remains constant
  • D. Oscillates
Q. In a diffraction pattern, if the distance between the slits is decreased, what happens to the central maximum? (2022)
  • A. It becomes wider
  • B. It becomes narrower
  • C. It disappears
  • D. It remains unchanged
Q. In a diffraction pattern, the central maximum is observed to be the brightest. What is the reason for this? (2022)
  • A. It has the least path difference
  • B. It has the maximum path difference
  • C. It has the maximum intensity
  • D. It has the minimum intensity
Q. In a double-slit experiment, if the distance between the slits is 0.1 mm and the screen is 1 m away, what is the fringe separation for light of wavelength 500 nm? (2020)
  • A. 0.5 mm
  • B. 0.1 mm
  • C. 0.2 mm
  • D. 0.3 mm
Q. In a double-slit experiment, if the wavelength of light is halved, what happens to the fringe width? (2020)
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. In a generator, mechanical energy is converted into electrical energy through: (2019)
  • A. Electromagnetic induction
  • B. Thermal conduction
  • C. Chemical reaction
  • D. Nuclear fission
Q. In a generator, mechanical energy is converted into which type of energy? (2021)
  • A. Thermal energy
  • B. Chemical energy
  • C. Electrical energy
  • D. Nuclear energy
Q. In a generator, what is the role of the rotating coil? (2022)
  • A. To create a magnetic field
  • B. To change the direction of current
  • C. To induce EMF by changing magnetic flux
  • D. To store electrical energy
Q. In a harmonic oscillator, if the mass is doubled while keeping the spring constant the same, how does the frequency change? (2021)
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. In a magnetic field, the force on a charged particle is maximum when the angle between the velocity and the magnetic field is: (2019)
  • A. 0 degrees
  • B. 90 degrees
  • C. 180 degrees
  • D. 45 degrees
Showing 481 to 510 of 846 (29 Pages)

Physics (MHT-CET) MCQ & Objective Questions

Physics is a crucial subject for students preparing for the MHT-CET exam, as it forms the foundation for many scientific concepts. Mastering Physics through MCQs and objective questions not only enhances your understanding but also significantly boosts your exam scores. Regular practice with these questions helps you identify important topics and improves your problem-solving skills, making it an essential part of your exam preparation.

What You Will Practise Here

  • Mechanics: Laws of Motion, Work, Energy, and Power
  • Thermodynamics: Laws, Heat Transfer, and Applications
  • Waves and Oscillations: Types of Waves, Sound Waves, and Properties
  • Optics: Reflection, Refraction, and Optical Instruments
  • Electromagnetism: Electric Fields, Magnetic Fields, and Circuits
  • Modern Physics: Quantum Theory, Atomic Structure, and Nuclear Physics
  • Key Formulas and Definitions: Essential for quick revisions

Exam Relevance

Physics is a significant component of various examinations including CBSE, State Boards, NEET, and JEE. In these exams, questions often focus on conceptual understanding and application of theories. Common patterns include numerical problems, conceptual MCQs, and application-based questions that test your grasp of fundamental principles. Familiarity with these patterns through practice will enhance your confidence and performance on exam day.

Common Mistakes Students Make

  • Misunderstanding the application of formulas in different contexts.
  • Overlooking units and dimensions, leading to incorrect answers.
  • Confusing similar concepts, such as velocity and acceleration.
  • Neglecting to read questions carefully, resulting in misinterpretation.
  • Rushing through calculations without checking for errors.

FAQs

Question: What are the best ways to prepare for Physics (MHT-CET) MCQs?
Answer: Regular practice with previous years' question papers and mock tests, along with a focus on understanding concepts, is key to success.

Question: How can I improve my speed in solving Physics MCQs?
Answer: Time yourself while practicing and focus on solving simpler questions first to build confidence and speed.

Start your journey towards mastering Physics today! Solve practice MCQs and test your understanding to ensure you are well-prepared for the MHT-CET exam. Your success in Physics is just a question away!

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