Mechanical Engineering with Dr. Sanei
A series of lectures and examples for mechanical engineering topics from statics, dynamics to finite element analysis. It is most suitable for mechanical engineering students
Разработка технических условий является ключевым этапом процесса проектирования.
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Solving Differential Equations Using Laplace Transform Technique with Examples
Power Screw Example 4: Finding the power required to move a 2.2 kip load at speed of 2 in/s
Power Screw Example 3: Finding stresses on the body and threads of a power screw
Power Screw Example 6: Finding the power required for running a press to generate 5000 lbf
Power Screw Example 5: Finding the axial load F and the combined efficiency of the screw and collar
Power Screw Example 2: Handle Failure and Clamping Force Analysis in a ¾ in-10 Square Thread Clamp
Power Screw Example 1: Calculating Clamping Force for Square Thread Clamp based on the torque
Stresses in Power Screws: Analysis of Torsion, Compression, and Thread Stresses
Understanding the mechanics of Power Screws: Applications, Mechanics, and Self-Locking Principles
Example 2: Determining the Steady State response with (a) transfer functin and (b) with Bode Plots
Example 1: Finding Steady State Response using frequency approach: Analysis of a Sinusoidal Input
Understanding Bode Plots: Frequency Response Analysis in LTI Systems Lecture
Help with HW#3
Exercise 12: Finding the transfer function of system with resistor, capacitor and inductor
Exercise 13: Perform mesh analysis of circuit shown below using Kirchoff's voltage law
Exercise 14: Finding the transfer function of electrical system with resistors and capacitors
Electrical Systems Overview: Ohm's Law & Kirchhoff's Laws for Resistors, Inductors, and Capacitors
Finding the deflection of a beam under distributed loading using integration method
Introduction to First Order Systems in Control: steady state response under step, impulse and ramp
Deflection of a beam under both distributed and point load using macaulay bracket (angle bracket)
Shaft design, deflection consideration, linear and angular deflection
Exercise 7: Finding the transfer function and the corresponding time constant of first order system
Exercise 6: Will changing the input of first order system change the steady state or time constant?
Exercise 5: Time response of a first order system under different initial conditions
Exercise 4: Steady state response of a first order system with a step function as input
Exercise 3: First Order System practice to find the response of the system
Exercise 2: First Order System for finding the time constant
Real Talk: What I Earn as a Mechanical Engineering Professor