Mumbai University Engineering Syllabus Second Year - 2018-2019 StudyChaCha

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Old August 19th, 2012, 10:26 AM
dharendar sing
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Default Mumbai University Engineering Syllabus Second Year

I am in 2nd year of B.Tech CSE at Mumbai University, now my classes’ starts, so I need the syllabus, please provide me the syllabus.
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Old August 19th, 2012, 11:57 AM
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Default Re: Mumbai University Engineering Syllabus Second Year

Here is the syllabus for Mumbai University B.Tech program for II year.

Applied Mathematics
Complex Variables: Regions and paths in the Z plane. Path/Line integral of a function. Inequality conditions for a path integral to
be independent of the path joining two points. Contour Integral, Cauchy's theorem for analytical functions with continuous
derivatives. Cauchy Goursat theorem( statement only ) and its use for multiply connected regions. Cauchy's integral formula and
deductions. Morera's theorem and maximum modulus theorem. Taylor's and Laurent's developments, Singularities, poles, residue
at isolated singularity and its evaluation. Residue theorem - Application to evaluate real integrals.

Matrices: Brief revision of vectors over real field, inner product, normal, linear independence, orthogonality. Characteristic values
and vectors, and their properties for Hermitian and real Symmetric matrices. Characteristic polynomial. Cayley Hamilton theorem,
functions of a square matrix, minimal polynomial, diagonable matrix. Quadratic forms, orthogonal, congruent and Lagrange's
reduction of quadratic forms, rank, index, signature of a quadratic form, value class of a quadratic form. Statement of bilinear form.

Vector Calculus: Scalar and Vector point functions, directional derivative, level surfaces, gradient, surface and volume integrals,
definition of curl, divergence. Use of operator. Conservative, irrotational, solenoidal fields. Green's theorem for plane regions and
properties of line integral in a plane, Statements of Stoke's theorem, Gauss Divergence theorem, related identities, deductions,
statement of Laplace's differential equation in cartesian, spherical, polar and cylindrical co-ordinates.

For more detailed syllabus click on the attachment given below. The file contains the syllabus for all the semesters.
Attached Files
File Type: pdf MU Syllabus B.Tech CSE.pdf (101.9 KB, 22 views)
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