Advanced Engineering Mathematics detailed Syllabus for Electrical & Electronics Engineering (DEEE), C18 curriculum has been taken from the TSSBTET official website and presented for the diploma students. For Course Code, Course Name, Lectures, Tutorial, Practical/Drawing, Internal Marks, Max Marks, Total Marks, Min Marks and other information, do visit full semester subjects post given below.
For all other Diploma in Electrical & Electronics Engineering (DEEE) Syllabus for 4th Sem C18 Curriculum TSSBTET, do visit Diploma in Electrical & Electronics Engineering (DEEE) Syllabus for 4th Sem C18 Curriculum TSSBTET Subjects. The detailed Syllabus for advanced engineering mathematics is as follows.
Prerequisites:
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Course Outcomes:
At the end of the course, the student will have the ability to:
- CO 1 Solve simple Homogeneous Linear Differential Equations
- CO 2 Solve simple Non-Homogeneous Linear Differential Equations
- CO 3 Express f(‘x’) as a Fourier series in the given interval
- CO 4 Express f(‘x’) as a Fourier Half-Range Cosine series and Sine series
- CO 5 Find Laplace transforms of simple functions
- CO 6 Find Inverse Laplace transforms of simple functions and solve Linear Differential Equations using Laplace Transformations.
Unit – I Duration: 05 Periods (L:30 – T:20)
Homogeneous Linear Differential equations with constant coefficients Homogenous linear differential equations with constant coefficients of order two and higher with emphasis on second order.
Unit – II Duration: 15 Periods (L:120 – T:30)
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Unit-III Fourier series Duration: 10 Periods (L: 80 – T: 20)
Orthogonality of trigonometric functions, Representation of a function in Fourier series over the interval (c,c+2(pi)) , Eulers formulae, sufficient conditions for existence of Fourier series for a function. Even, Odd functions and Fourier series over the Interval (0,2^(pi)) and (-pi,pi)
Unit – IV Fourier Half-range series Duration: 05 Periods (L: 30 – T: 20)
Representation of a function as Fourier Half-range Sine series and Cosine series over the interval (0,pi)
Unit – V Laplace Transformations: Duration: 10Periods (L: 70 – T:30)
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Unit – VI Inverse Laplace transforms:
Inverse Laplace transforms- shifting theorems and change of scale property, multiplication by s^n and division by s -Inverse Laplace Transform using partial fractions – convolution theorem (no proof) – application of Laplace Transformations to solve ordinary differential equations of second orde with initial conditions.
Recommended Books:
- Higher Engineering Mathematics, B.S.Grewal .
- Laplace Transforms – Murray R. Spigel .
- Ordinary Differential Equations – R. S. Aggarwal.
- Fourier Series – A.R. Vasishtha and Gupta.
Suggested E-Learning references:
For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
Suggested Student Activities:
- Student visits Library to refer Standard Books on Mathematics and collect related material.
- Quiz
- Group discussion
- Surprise tests
- Seminars
- Home Assignments.
For detail Syllabus of all other subjects of Electrical & Electronics Engineering, C18 curriculum do visit Diploma In Electrical & Electronics Engineering 4th Sem Syllabus for C18 curriculum.
For all Electrical & Electronics Engineering results, visit TSSBTET DEEE all semester results direct links.