Search result for Mechanics of materials solutions Online Courses & Certifications
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Applications in Engineering Mechanics
by Dr. Wayne Whiteman, PE- 4.8
Approx. 16 hours to complete
The copyright of all content and materials in this course are owned by either the Georgia Tech Research Corporation or Dr. Any other use of the content and materials, including use by other academic universities or entities, is prohibited without express written permission of the Georgia Tech Research Corporation. Pdf Version of Module 23: Introduction – Coulomb Friction Lecture...
Engineering Systems in Motion: Dynamics of Particles and Bodies in 2D Motion
by Dr. Wayne Whiteman, PE- 4.9
Approx. 23 hours to complete
This course is an introduction to the study of bodies in motion as applied to engineering systems and structures. We will study the dynamics of particle motion and bodies in rigid planar (2D) motion. The copyright of all content and materials in this course are owned by either the Georgia Tech Research Corporation or Dr....
Networking and Security Architecture with VMware NSX
by Chris McCain- 4.7
Approx. 20 hours to complete
This 8 week online course equips learners with the basics of network virtualization with VMware NSX. To get the most of this course, you should have familiarity with generic IT concepts of routing, switching, firewalling, disaster recovery, business continuity, cloud and security. Application Continuity Solutions (part 1 of 2) Application Continuity Solutions (part 2 of 2)...
Mechanics of Materials IV: Deflections, Buckling, Combined Loading & Failure Theories
by Dr. Wayne Whiteman, PE- 4.8
Approx. 8 hours to complete
This course explores the analysis and design of engineering structures considering factors of deflection, buckling, combined loading, & failure theories The copyright of all content and materials in this course are owned by either the Georgia Tech Research Corporation or Dr. Module 22: Apply failure theories to a mechanics of materials problem...
Advanced Fluid Mechanics 2: The Navier-Stokes Equations for Viscous Flows
by Gareth McKinley , Bavand Keshavarz , John Liu , Emily Welsh- 0.0
12 Weeks
This course is the second of a three-course sequence in incompressible fluid mechanics consisting of Advanced Fluid Mechanics 1: Fundamentals; Advanced Fluid Mechanics 2: The Navier-Stokes Equations for Viscous Flows, and Advanced Fluid Mechanics 3: Potential Flows, Lift, Circulation & Boundary Layers. The concept of Dynamical similarity Application of Dimensional analysis to complex problems...
$99
Mastering Quantum Mechanics Part 1: Wave Mechanics
by Barton Zwiebach , Jolyon Bloomfield- 0.0
4 Weeks
Learn the foundations of quantum mechanics, including wave mechanics, spin one-half states, linear algebra and bra-ket notation of Dirac. This physics course offers a sophisticated view of quantum mechanics and its proper mathematical foundation. In this first module of three you will review the basics of wave mechanics and be introduced to the variational principle. Basics of Wave Mechanics...
$50
Mechanical Behavior of Materials, Part 3: Time Dependent Behavior and Failure
by Lorna J. Gibson , Jessica Sandland- 0.0
6 Weeks
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems. This course is the third of three in a series of mechanics courses from the Department of Materials Science and Engineering at MIT. The relationship between the behavior of materials at an atomistic level and thecontinuum response of materials...
$49
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Elements of Structures
by Simona Socrate , Alexie M. Kolpak- 0.0
10 Weeks
An introduction to the subject “strength of materials. 01x introduces principles of structural analysis and strength of materials in applications to three essential types of elastic load-bearing elements: bars in axial loading, axisymmetric shafts in torsion, and symmetric beams in bending. 1x Mechanics of Deformable Structures: Part 1. 2x Mechanics of Deformable Structures: Part 2....
$99
Mechanics: Motion, Forces, Energy and Gravity, from Particles to Planets
by Prof. Joe Wolfe , Dr Elizabeth J. Angstmann , Mr Sebastian Fricke- 4.7
Approx. 29 hours to complete
Mechanics begins by quantifying motion, and then explaining it in terms of forces, energy and momentum. By studying mechanics in this course, you will understand with greater depth many of the wonders around you in everyday life, in technology and in the universe at large. 3: Centre of Mass, Elastic and Inelastic Collisions...
Mastering Quantum Mechanics
by Barton Zwiebach- 0.0
18 Weeks
Learn the foundations of quantum mechanics – wave mechanics, spin one-half, vector spaces and linear operators, the Heisenberg uncertainty principle, quantum dynamics, two-state systems, entanglement, and angular momentum. This course offers a sophisticated view of quantum mechanics and its proper mathematical foundation. The first part reviews the basics of wave mechanics and introduces the variational principle....
$149