Engineering & Architecture Admissions

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Engineering & Architecture Admissions MCQ & Objective Questions

Engineering & Architecture Admissions play a crucial role in shaping the future of aspiring students in India. With the increasing competition in entrance exams, mastering MCQs and objective questions is essential for effective exam preparation. Practicing these types of questions not only enhances concept clarity but also boosts confidence, helping students score better in their exams.

What You Will Practise Here

  • Key concepts in Engineering Mathematics
  • Fundamentals of Physics relevant to architecture and engineering
  • Important definitions and terminologies in engineering disciplines
  • Essential formulas for solving objective questions
  • Diagrams and illustrations for better understanding
  • Conceptual theories related to structural engineering
  • Analysis of previous years' important questions

Exam Relevance

The topics covered under Engineering & Architecture Admissions are highly relevant for various examinations such as CBSE, State Boards, NEET, and JEE. Students can expect to encounter MCQs that test their understanding of core concepts, application of formulas, and analytical skills. Common question patterns include multiple-choice questions that require selecting the correct answer from given options, as well as assertion-reason type questions that assess deeper comprehension.

Common Mistakes Students Make

  • Misinterpreting the question stem, leading to incorrect answers.
  • Overlooking units in numerical problems, which can change the outcome.
  • Confusing similar concepts or terms, especially in definitions.
  • Neglecting to review diagrams, which are often crucial for solving problems.
  • Rushing through practice questions without understanding the underlying concepts.

FAQs

Question: What are the best ways to prepare for Engineering & Architecture Admissions MCQs?
Answer: Regular practice of objective questions, reviewing key concepts, and taking mock tests can significantly enhance your preparation.

Question: How can I improve my accuracy in solving MCQs?
Answer: Focus on understanding the concepts thoroughly, practice regularly, and learn to eliminate incorrect options to improve accuracy.

Start your journey towards success by solving practice MCQs today! Test your understanding and strengthen your knowledge in Engineering & Architecture Admissions to excel in your exams.

Q. If a metal has a work function of 2 eV, what is the minimum wavelength of light required to cause the photoelectric effect?
  • A. 620 nm
  • B. 310 nm
  • C. 1240 nm
  • D. 500 nm
Q. If a metal has a work function of 2 eV, what is the threshold wavelength for the photoelectric effect?
  • A. 620 nm
  • B. 400 nm
  • C. 500 nm
  • D. 300 nm
Q. If a metal has a work function of 2.0 eV, what is the maximum kinetic energy of the emitted electrons when illuminated with light of 5.0 eV energy?
  • A. 3.0 eV
  • B. 2.0 eV
  • C. 5.0 eV
  • D. 0 eV
Q. If a metal has a work function of 3 eV, what is the maximum wavelength of light that can cause photoemission?
  • A. 400 nm
  • B. 500 nm
  • C. 600 nm
  • D. 700 nm
Q. If a metal has a work function of 4 eV, what is the minimum wavelength of light required to cause the photoelectric effect?
  • A. 310 nm
  • B. 620 nm
  • C. 1240 nm
  • D. 2480 nm
Q. If a metal has a work function of 4 eV, what is the threshold frequency for the photoelectric effect?
  • A. 1.5 x 10^14 Hz
  • B. 3.2 x 10^14 Hz
  • C. 5.0 x 10^14 Hz
  • D. 6.3 x 10^14 Hz
Q. If a metal rod is heated at one end, how does the heat travel to the other end?
  • A. By convection
  • B. By radiation
  • C. By conduction
  • D. By insulation
Q. If a needle is carefully placed on the surface of water, it floats due to:
  • A. Cohesion
  • B. Adhesion
  • C. Surface tension
  • D. Density
Q. If a person is standing 50 meters away from a building and the angle of elevation to the top of the building is 60 degrees, what is the height of the building?
  • A. 25√3 meters
  • B. 50√3 meters
  • C. 75 meters
  • D. 100 meters
Q. If a person lifts a 10 kg object to a height of 5 m in 2 seconds, what is the power exerted?
  • A. 25 W
  • B. 50 W
  • C. 75 W
  • D. 100 W
Q. If a person lifts a 10 kg object to a height of 5 m in 5 seconds, what is the power exerted?
  • A. 100 W
  • B. 200 W
  • C. 300 W
  • D. 400 W
Q. If a person lifts a 10 kg weight to a height of 2 meters in 4 seconds, what is the power exerted?
  • A. 50 W
  • B. 100 W
  • C. 200 W
  • D. 250 W
Q. If a person lifts a 50 kg box to a height of 2 meters in 5 seconds, what is the power exerted?
  • A. 200 W
  • B. 400 W
  • C. 500 W
  • D. 600 W
Q. If a person lifts a 50 kg object to a height of 2 meters in 5 seconds, what is the power exerted?
  • A. 200 W
  • B. 400 W
  • C. 500 W
  • D. 600 W
Q. If a person lifts a weight of 100 N to a height of 2 m in 4 seconds, what is the power exerted?
  • A. 50 Watts
  • B. 100 Watts
  • C. 200 Watts
  • D. 25 Watts
Q. If a photon has a wavelength of 300 nm, what is its energy?
  • A. 4.14 eV
  • B. 6.2 eV
  • C. 8.2 eV
  • D. 10.0 eV
Q. If a photon has energy of 5 eV, what is its corresponding frequency?
  • A. 6.2 x 10^14 Hz
  • B. 7.5 x 10^14 Hz
  • C. 8.0 x 10^14 Hz
  • D. 9.0 x 10^14 Hz
Q. If a photon with energy 5 eV strikes a metal with work function 3 eV, what is the kinetic energy of the emitted electron?
  • A. 2 eV
  • B. 3 eV
  • C. 5 eV
  • D. 8 eV
Q. If a planet rotates about its axis, which of the following statements is true regarding its angular momentum?
  • A. It is zero
  • B. It is constant
  • C. It changes with time
  • D. It depends on the distance from the sun
Q. If a point charge Q is placed at the center of a spherical Gaussian surface of radius R, what is the electric flux through the surface?
  • A. 0
  • B. Q/ε₀
  • C. Q/2ε₀
  • D. Q/4ε₀
Q. If a point charge Q is placed at the center of a spherical Gaussian surface of radius R, what is the total electric flux through the surface?
  • A. 0
  • B. Q/ε₀
  • C. Q/4πε₀R²
  • D. Q/4πε₀
Q. If a point charge Q is placed at the center of a spherical Gaussian surface, what is the total electric flux through the surface?
  • A. 0
  • B. Q/ε₀
  • C. Q/4πε₀
  • D. 4πQ/ε₀
Q. If a potentiometer is used to compare two cells, what is the effect of increasing the length of the wire?
  • A. It increases the accuracy of the measurement
  • B. It decreases the accuracy of the measurement
  • C. It has no effect on the measurement
  • D. It makes the cells equal
Q. If a potentiometer is used to compare two emfs, what is the key requirement for the two circuits?
  • A. They must have the same resistance
  • B. They must have the same length of wire
  • C. They must be connected in series
  • D. They must have the same potential gradient
Q. If a potentiometer is used to measure a voltage of 12 V and the length of the wire used is 6 m, what is the potential gradient?
  • A. 2 V/m
  • B. 4 V/m
  • C. 6 V/m
  • D. 8 V/m
Q. If a potentiometer is used to measure the EMF of a cell and the balance point is found at 3 m, what can be inferred about the cell's EMF if the potential gradient is 1.5 V/m?
  • A. 1.5 V
  • B. 3 V
  • C. 4.5 V
  • D. 6 V
Q. If a potentiometer is used to measure the potential difference across a resistor, what must be true about the circuit?
  • A. The resistor must be in series with the potentiometer.
  • B. The potentiometer must be connected in parallel with the resistor.
  • C. The potentiometer must be connected in series with the power supply.
  • D. The resistor must be short-circuited.
Q. If a potentiometer wire has a potential difference of 12 V and a length of 6 m, what is the potential gradient?
  • A. 2 V/m
  • B. 1 V/m
  • C. 0.5 V/m
  • D. 3 V/m
Q. If a potentiometer wire has a potential difference of 12V across it and is 4m long, what is the potential gradient?
  • A. 3 V/m
  • B. 4 V/m
  • C. 2 V/m
  • D. 1 V/m
Q. If a potentiometer wire has a resistance of 10 ohms and a current of 0.5 A flows through it, what is the potential difference across the wire?
  • A. 2.5 V
  • B. 5 V
  • C. 10 V
  • D. 15 V
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