BVP CET M.Tech. Nanotechnology Engineering Exam Pattern
BVP CET M.Tech is one Paper of 180 minutes.
- There will be one question paper of 100 marks, separate for each M.Tech. course.
- It will be set in English medium and will contain 100 multiple choice objective-type questions.
- Engineering Mathematics is common for all branches and other subject related to specialisation.
Test duration- 3 hours
Marking System – 1 marks each for each question.
|No. Of Subject||17|
|No. Of Unit||24|
|No. Of Chapter||115|
- Limit, continuity and partial derivatives
- Directional derivative
- Total derivative
- Tangent Plane and Normal Line
- Maxima, minima and saddle points
- Method of Lagrange Multipliers
- Double and Triple Integrals
- Limit, Continuity and Differentiability
- Mean value theorems
- Indeterminate forms and L'Hospital's rule
- Maxima and minima
- Taylor's theorem
- Fundamental theorem
- Mean Value-Theorems
- Evaluation of definite and improper integrals
- Convergence of Sequence and Series
- Tests for Convergence
- Power series
- Taylor's series
- Fourier Series
- Half range Sine and Cosine Series
- First Order equations
- Higher Order linear differential equations
- Second Order linear differential equations
- Cauchy-Euler equation
- Legendre Polynomials
- Bessel Functions
- Algebra of matrices
- Inverse and rank of a matrix
- System of linear equations
- Eigenvalues and Eigenvectors
- Diagonalisation of Matrices
- Cayley-Hamilton Theorem
- Axioms of Probability
- Conditional Probability
- Bayes' Theorem
- Discrete and continuous random Variables
- Binomial, Poisson and normal Distributions
- Correlation and Linear Regression
- Phase Rule, Phase Diagrams
- Lever Rule, Basic Heat Treatment of Metal
- Solidification and Phase Transformations
- Fick’s Laws of Diffusion
- Temperature Dependence of Diffusivity
- Gauss Elimination and Gauss-Seidel Methods
- Lagrange and Newton's interpolations
- Newton-Raphson method
- Trapezoidal rule
- Simpson's rule and Gaussian Quadrature Rule
- Euler's method
- 4th order Runge-Kutta method
- Stress-Strain Response of Metallic, Ceramic and Polymer Materials
- Tensile Strength and Modulus
- Free Electron Theory
- Fermi energy
- Elements of Band Theory
- Piezo, Ferro, Pyro Electric Materials
- Specific Heat, Thermal Conductivity
- Thermal expansion, Thermoelectricity
- Origin of magnetism
- Paramagnetism, Diamagnetism
- Ferro and Ferrimagnetism
- Refractive Index
- Absorption and Transmission of Electromagnetic Radiation
- Electro Optic and Magneto Optic Materials
- Spontaneous and Stimulated Emission
How to prepare
Make a proper Time Table
It is very important that you make a time table and stick to it and you will have an exact idea of what you are required to study and the time required for it.
Concept clarity rather than rote learning
It is essential that you have a clear idea of the formulas and concepts rather than rote learning of things for the papers. While you might require it for memorizing formulas it is important that for other stuff you make sure you clear your basis and concepts before moving on.
It is very important make small notes or a comprehensive list of formulas on each covered topic and chapter which will come in handy at the time of revision. This will require you to be regular with your work but will surely make things easy at the time of revision.
Aspirants should focus on core Engineering topics and theory including those of Engineering Maths. Try and finish all the topics in the next two months. Thereafter, do not touch new topics or comfortable areas. The chief strategy should be to attempt familiar questions and leave non-familiar/non-comfortable questions. Candidates should be able to decide this within 10 seconds.
Speed will be also very critical in the exam. Apart question learning to select a question, candidates should also to reject a question in less than 10 seconds.
Expect some calculation-heavy problems. These questions are meant to be left alone. Give it a try only if are not very close.
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