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Mechanical

Are you looking to improve your proficiency in the field of mechanical sciences? It encompasses a wide variety of topics ranging from solar energy to micro fluids, fluid mechanics, rotor dynamics and more.

Our online video tutorials are going to explore and explain the different concepts that are a part of mechanical sciences. Those who are interested to know more about welding engineering and the way it functions can learn about the same with our tutorials. We even have lectures for advanced rocket propulsion which will have to do with a great deal of different complex calculations.

We have a separate course for mathematics model in engineering and science. This is crucial because mathematics has an important role to play when it comes to solving the different problems of mechanical science. With our lectures, one will be able to get a better and crisper understanding of the subject matter. The lectures have been segregated under different topic heads to make it better to understand the core aspects of mechanical sciences.

We have multiple lectures on fluid mechanics as we will teach the basic concepts and then move on to even advanced points which will help people easily grasp the technicalities and then work upon the same. When we are offering lessons on mechanics sciences, we have ensured that we will cover all the core ideas and offer even advanced lessons. So, feel free to explore the lectures to find the ones that pertain to your interest.

Showing 20 of 79 courses
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Powder Metallurgy - Metal Forming - Fundamentals - Forging - Swaging & Wire Drawing - Sheet Metal Operations - Sheet Metal Working - Presses,Equipment - High Energy Rate Formi
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  • Self Paced
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Production Planning and Control - Product Design & development-Statistical Process Control - Welding Process Classification - Brazing, Soldering and Braze Welding - Arc Weldin
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  • Self Paced
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Introduction, Heat Conduction, Thermal Radiation, Fluid Mechanics, Natural and Forced Convection, Heat Exchangers, Boiling and Condensation, Introduction to Mass Transfer.
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Introduction to Linear Programming Formulations - Linear Programming Solutions - Graphical Methods,Simplex Algorithm - Simplex Algorithm -Minimization Problems,Initialization
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Rigid Body Motion, Eulers Equation of Motion, Gyroscopic Action in Machines, Rotary Balancing, Single-Cylinder Engine Balancing, Flywheel Analysis, Equivalent viscous damping,
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Design and Manufacturing, Engineering Materials, Simple Stresses and Compound Stresses in Machine Elements, Design For Strength, Design of Fasteners, Design Of Keys and Spline
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Introduction, Raster Graphics, Polygon Filling, Windowing and Clipping, 2D Transformations, 3D Transformations and Projection, Hidden Surface Removal, Galerkins Approach, 1D F
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Solid Mechanics - Analysis of stress and strain - Analysis of stress continued - Analysis of stress continued - Shear Stress - Graphical Solution Ė Mohrís Stress Circle - Illu
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Introduction to basic of Mechanical Measurements - Three Groups Of Instruments - Details of Signals - Threshold And Its Examples - Sources of Error - Gear meshing - Field of m
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Contents: Introduction - transfering and transforming motion and force - kinematics - number synthesis - grubler formation - motion transfer links - kinematic inversion - mot
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Computational methods in design and manufacturing - Application of finite element analysis - Basis of finite element analysis - Stiffness Matrix - Surface forces and Body forc
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Introduction - intial value problems of mathematical physics - element calculation-post process - advantages&problems - weighted residual approach - petrov-galerkin-p 2 gradua
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Stress and strains in 3d - straction vector - planes of maximum shear stress - tensosrs - hydrostatic&deviatoric stress - relative displacement&rotation tensors-equilibrium eq
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Basic of non-linear finite element analysis - Heat transfer problem - Incremental-iterative approach - Incremental procedure - Simple non-linear problem - Stress update algori
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Contents: Introduction - Architecture of Industrial Automation Systems - Measurement Systems Characteristics - Temperature Measurement - Pressure, Force and Torque Sensors -
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Subgradient, cutting-plane, and ellipsoid methods. Decentralized convex optimization via primal and dual decomposition. Alternating projections. Exploiting problem structure i
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Contents: Introduction - Guest-Logistics, Convex Functions - Vector Composition - Optimal And Locally Optimal Points - Linear-Fractional Program - Generalized Inequality Cons
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Introduction, Internal Energy Enthalpy, Crystal Geometry, Structure, Structure of Solid Materials, Non Crystalline Solids, Polymers, Crystal Imperfections, Phase Diagrams, Dif
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Engineering Mechanics, Equilibrium, Plan Trusses, Friction, Properties of surfaces, Method of virtual work, Motion of Particles Planar Polar co-ordinates, Motion with Constrai
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