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2nd December 2016, 05:44 PM
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Join Date: Mar 2013
Re: TS PGECET Syllabus

University College of Engineering, Osmania University conducts TSPGECET) for admission into Regular PG Courses in Engineering, Technology, Architecture, Pharmacy (ME / M.Tech./ M.Pharmacy / M.Arch ), Graduate level Pharm-D (Post Baccalaureate).


Examination Pattern :
The Test is of two hour duration with 120 multiple choice objective questions, carrying one mark for each question.

The question papers will be in English only.

The Syllabus of the Aerospace Engineering of the TS PGECET Examination
Linear Algebra: Matrices and Determinants, systems of linear equations, Eigen values and Eigen vectors.

Calculus: Functions of single variable, limit, continuity and differentiability, mean value theorems, evaluation of definite and improper integrals, partial derivatives, total derivative, maxima and minima, gradient, divergence and
curl, vector identities, directional derivatives, line, surface and volume integrals.

Stokes, Gauss and Green’s Theorem’s.
Differential Calculus: First order linear and nonlinear equations; higher order linear ODEs with constant coefficients, Cauchy and Euler equations, and initial and boundary value problems, Laplace transforms. Partial differential equations and separation of variables methods.

Numerical methods: Numerical solution of linear and nonlinear algebraic equations, integration by trapezoidal and Simpson rule, single and multi-step methods for differential equations.

Flight Mechanics

Atmosphere: Properties, standard atmosphere. Classification of aircraft. Airplane (fixed wing aircraft) configuration and various parts.
Airplane performance: Pressure altitude; equivalent, calibrated, indicated air speeds;

Primary flight instruments:
Altimeter, ASI, VSI, Turn-bank indicator. Drag polar; take off and landing; steady climb & descent,-absolute and service ceiling; cruise, cruise climb, endurance or loiter; load factor, turning flight, V -n diagram; Winds: head, tail & cross winds.

Static stability: Angle of attack, sideslip; roll, pitch & yaw controls; longitudinal stick fixed & free stability, horizontal tail position and size; directional stability, vertical tail position and size; dihedral stability. Wing
dihedral, sweep & position; hinge moments, stick forces.


Dynamic stability: Euler angles; Equations of motion; aerodynamic forces and moments, stability & control derivatives; decoupling of longitudinal and lat-directional dynamics; longitudinal modes; lateral-directional modes.

Space Dynamics
Central force motion, determination of trajectory and orbital period in simple cases. Orbit transfer, in-plane and out-of-plane. Elements of rocket motor performance.


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