JEE Main MCQ & Objective Questions

The JEE Main exam is a crucial step for students aspiring to enter prestigious engineering colleges in India. It tests not only knowledge but also the ability to apply concepts effectively. Practicing MCQs and objective questions is essential for scoring better, as it helps in familiarizing students with the exam pattern and enhances their problem-solving skills. Engaging with practice questions allows students to identify important questions and strengthen their exam preparation.

What You Will Practise Here

  • Fundamental concepts of Physics, Chemistry, and Mathematics
  • Key formulas and their applications in problem-solving
  • Important definitions and theories relevant to JEE Main
  • Diagrams and graphical representations for better understanding
  • Numerical problems and their step-by-step solutions
  • Previous years' JEE Main questions for real exam experience
  • Time management strategies while solving MCQs

Exam Relevance

The topics covered in JEE Main are not only significant for the JEE exam but also appear in various CBSE and State Board examinations. Many concepts are shared with the NEET syllabus, making them relevant across multiple competitive exams. Common question patterns include conceptual applications, numerical problems, and theoretical questions that assess a student's understanding of core subjects.

Common Mistakes Students Make

  • Misinterpreting the question stem, leading to incorrect answers
  • Neglecting units in numerical problems, which can change the outcome
  • Overlooking negative marking and not managing time effectively
  • Relying too heavily on rote memorization instead of understanding concepts
  • Failing to review and analyze mistakes from practice tests

FAQs

Question: How can I improve my speed in solving JEE Main MCQ questions?
Answer: Regular practice with timed quizzes and focusing on shortcuts can significantly enhance your speed.

Question: Are the JEE Main objective questions similar to previous years' papers?
Answer: Yes, many questions are based on previous years' patterns, so practicing them can be beneficial.

Question: What is the best way to approach JEE Main practice questions?
Answer: Start with understanding the concepts, then attempt practice questions, and finally review your answers to learn from mistakes.

Now is the time to take charge of your preparation! Dive into solving JEE Main MCQs and practice questions to test your understanding and boost your confidence for the exam.

Q. If the wavelength of light used in an interference experiment is 500 nm, what is the fringe separation when the screen is placed 2 m away from the slits separated by 0.1 mm?
  • A. 0.01 m
  • B. 0.025 m
  • C. 0.05 m
  • D. 0.1 m
Q. If the wavelength of light used in Young's experiment is 600 nm and the distance between the slits is 0.1 mm, what is the distance between the first and second bright fringes on a screen 2 m away?
  • A. 0.12 m
  • B. 0.24 m
  • C. 0.36 m
  • D. 0.48 m
Q. If the wavelength of light used in Young's experiment is 600 nm, what is the fringe width when the distance between the slits is 0.1 mm and the distance to the screen is 2 m?
  • A. 0.03 mm
  • B. 0.06 mm
  • C. 0.12 mm
  • D. 0.15 mm
Q. If the Wheatstone bridge is balanced, what is the potential difference across the galvanometer?
  • A. Maximum.
  • B. Minimum.
  • C. Zero.
  • D. Equal to the supply voltage.
Q. If the Wheatstone bridge is unbalanced, what can be inferred about the potential difference across the galvanometer?
  • A. It is zero
  • B. It is positive
  • C. It is negative
  • D. It is non-zero
Q. If the Wheatstone bridge is unbalanced, what can be inferred about the resistances?
  • A. R1/R2 = R3/R4
  • B. R1/R2 ≠ R3/R4
  • C. R1 + R2 = R3 + R4
  • D. R1 - R2 = R3 - R4
Q. If the Wheatstone bridge is unbalanced, what can be said about the potential difference across the galvanometer?
  • A. It is zero.
  • B. It is maximum.
  • C. It is equal to the supply voltage.
  • D. It is constant.
Q. If the Wheatstone bridge is unbalanced, what happens to the current through the galvanometer?
  • A. It becomes zero.
  • B. It increases.
  • C. It decreases.
  • D. It becomes infinite.
Q. If the work function of a material is 2.5 eV, what is the minimum wavelength of light required to emit photoelectrons?
  • A. 400 nm
  • B. 500 nm
  • C. 600 nm
  • D. 700 nm
Q. If the work function of a metal is 2.5 eV, what is the minimum wavelength of light required to emit photoelectrons?
  • A. 400 nm
  • B. 500 nm
  • C. 600 nm
  • D. 700 nm
Q. If the work function of a metal is 4.5 eV, what is the threshold wavelength for the photoelectric effect?
  • A. 400 nm
  • B. 500 nm
  • C. 600 nm
  • D. 700 nm
Q. If the Young's modulus of a material is 100 GPa and it is subjected to a tensile stress of 200 MPa, what is the strain produced?
  • A. 0.002
  • B. 0.0025
  • C. 0.01
  • D. 0.005
Q. If two capacitors of capacitance C1 and C2 are connected in series, what is the equivalent capacitance?
  • A. C1 + C2
  • B. 1 / (1/C1 + 1/C2)
  • C. C1 * C2 / (C1 + C2)
  • D. C1 - C2
Q. If two cars are moving in opposite directions at speeds of 40 km/h and 60 km/h, what is their relative speed?
  • A. 100 km/h
  • B. 20 km/h
  • C. 40 km/h
  • D. 60 km/h
Q. If two cars are moving towards each other at speeds of 40 km/h and 60 km/h, how long will it take for them to meet if they are 200 km apart?
  • A. 1 hour
  • B. 2 hours
  • C. 3 hours
  • D. 4 hours
Q. If two charges of +3μC and +5μC are placed 0.3m apart, what is the magnitude of the force between them?
  • A. 0.15 N
  • B. 0.25 N
  • C. 0.45 N
  • D. 0.75 N
Q. If two charges of +3μC and -3μC are placed 0.1m apart, what is the net electric field at the midpoint?
  • A. 0 N/C
  • B. 54000 N/C
  • C. 27000 N/C
  • D. 81000 N/C
Q. If two coherent sources of light are in phase, what type of interference pattern will be observed?
  • A. No interference pattern
  • B. Destructive interference
  • C. Constructive interference
  • D. Random interference
Q. If two coherent sources of light are in phase, what type of interference will occur?
  • A. Destructive interference
  • B. Constructive interference
  • C. No interference
  • D. Random interference
Q. If two coherent sources of light are in phase, what will be the phase difference at a point where the path difference is λ/2?
  • A. 0 radians
  • B. π/2 radians
  • C. π radians
  • D. 2π radians
Q. If two coherent sources of light are in phase, what will be the phase difference at a point where the path difference is λ/4?
  • A. 0 radians
  • B. π/2 radians
  • C. π radians
  • D. 3π/2 radians
Q. If two coherent sources of light are in phase, what will be the result at a point where the path difference is λ/2?
  • A. Constructive interference
  • B. Destructive interference
  • C. No interference
  • D. Partial interference
Q. If two coins are tossed, what is the probability of getting at least one head?
  • A. 1/4
  • B. 1/2
  • C. 3/4
  • D. 1
Q. If two dice are rolled, what is the probability of getting a sum of 7?
  • A. 1/6
  • B. 1/12
  • C. 1/36
  • D. 1/18
Q. If two equal and opposite forces are applied at the ends of a lever arm of length 1 m, what is the net torque about the center?
  • A. 0 Nm
  • B. 1 Nm
  • C. 2 Nm
  • D. 4 Nm
Q. If two equal and opposite forces are applied at the ends of a lever arm of length 4 m, what is the net torque about the center?
  • A. 0 Nm
  • B. 8 Nm
  • C. 4 Nm
  • D. 16 Nm
Q. If two equal and opposite forces are applied at the ends of a lever arm, what is the net torque about the center?
  • A. Zero
  • B. Equal to the force
  • C. Depends on the distance
  • D. Twice the force
Q. If two forces of 10 N and 15 N act in the same direction on an object, what is the resultant force?
  • A. 5 N
  • B. 10 N
  • C. 15 N
  • D. 25 N
Q. If two forces of 10 N and 15 N act on an object in the same direction, what is the net force acting on the object?
  • A. 5 N
  • B. 10 N
  • C. 15 N
  • D. 25 N
Q. If two forces of 10 N and 5 N act in the same direction on an object, what is the net force?
  • A. 15 N
  • B. 5 N
  • C. 10 N
  • D. 20 N
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