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Punyashlok Ahilyadevi Holkar Solapur University, Maharashtra
Computer Engineering
Engineering Mechanics
Punyashlok Ahilyadevi Holkar Solapur University, Maharashtra, Computer Engineering Semester 1, Engineering Mechanics Syllabus
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Unit - 1 Resultant of co planar forces
UNIT1
Resultant of coplanar forces
1.1 Basic introduction
1.2 Composition of coplanar concurrent and nonconcurrent forces
Unit - 2 Equilibrium of Rigid Bodies
Unit2
Equilibrium of Rigid Bodies
2.1 Equilibrium of coplanar forces analytical and graphical conditions of equilibrium different type of supports free body diagrams Lami’s theorem
2.2 Friction
2.3 Principle of virtual work concept only introduction to forces in space.
Unit - 3 Analysis of Pin-Jointed Plane Frames
Unit3
Analysis of PinJointed Plane Frames
3.1 Pinjointed statically determinate plane trussesperfect frames assumptions determination of nature and magnitude of a force in a member simple trusses zero force members.
3.2. Analysis of trusses by method of joints method of sections and graphical method.
Unit - 4 Centre of Gravity and Moment of Inertia
Unit4
Centre of Gravity and Moment of Inertia
4.1 Centre of gravity centroid of a composite area
4.2 Centroid of simple figures from first principle
4.3 Centroid of composite sections Centre of Gravity and its implication
4.4 Moment of inertia
Unit - 5 Kinematics of particles
Unit5
Kinematics of particles
5.1 Rectilinear motion equations of motion
5.2 Motion curves and their applications
5.3 Relative velocitysimple problems
5.4 Curvilinear motion angular motion
5.5 Relation between angular motion and linear motion and equation of angular motion
5.6 Tangential and radial acceleration motion of a projectile
Unit - 6 Kinetics of Particles
Unit6
Kinetics of Particles
6.1 Newton’s laws of motion for linear motion and angular motion
6.2 D’Alembert’s principle
6.3 Rectilinear motions on a rough inclined plane
6.4 Motion of a lift motion of connected bodies
6.5 Circular motion kinetics of rotationtorque
6.6 Mass moment of inertia problems on centroid rotation
Unit - 7 Work Energy Methods
Unit7
Work Energy Methods
7.1 Potential energy kinetic energy of linear motion and rotation
7.2 Principle of conservation of energy work energy equation
7.3 Impulse momentum method collision Impact central eccentric direct oblique elastic plastic
7.4 Coefficient of restitution Loss of kinetic energy due to impact
Unit - 8 Mechanical Vibrations
Unit8
Mechanical Vibrations
8.1 Basic terminology
8.2 Free and forced vibrations
8.3 Resonance and its effects Degree of freedom
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Other Subjects of Semester-1
Engineering physics
Communication skills
Engineering chemistry
Engineering mathematics i
Basic mechanical engineering
Basic electrical & electronics engineering
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