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Chemical Engineering courses

Learn Chemical Engineering online: university courses, full YouTube courses, and courses with free certificates, from the IITs, MIT, Harvard, Google, Microsoft and more.

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MIT OpenCourseWare

Ethics for Engineers: Artificial Intelligence

Artificial Intelligence (AI), and the algorithmic judgment at its core, is developing at breakneck speed. This version of the popular Ethics for Engineers course focuses on the ethics issues involved in the latest developments of computer science.

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Ethics of AI Bias

This video aims to delve into the human problems brought out by issues in artificial intelligence, specifically with respect to bias. It is suitable for classroom use or as a standalone video for those who wish to understand the issue more deeply than is conventionally covered. For classroom use, w…

  • MIT
  • Self-paced
  • Free course

IIT Madras

Colloids and Surfaces

Chemical Engineering course by Prof. Basavaraj Madivala Gurappa.

  • NPTEL
  • 8 weeks, 48 lectures
  • Self-paced
  • Free course
  • Paid certificate
  • Advanced

IIT Bombay

Chemical Process Control

Chemical Engineering course by Prof. Sujit Jogwar.

  • NPTEL
  • 8 weeks, 48 lectures
  • Self-paced
  • Free course
  • Paid certificate
  • Intermediate

IIT Madras

Fluid and Particle Mechanics

Chemical Engineering course by Prof. Basavaraju, Prof. Sumesh.

  • NPTEL
  • 12 weeks, 73 lectures
  • Self-paced
  • Free course
  • Paid certificate
  • Intermediate

IIT Madras

Artificial Lift

Chemical Engineering course by Prof. Abdus Samad.

  • NPTEL
  • 12 weeks, 62 lectures
  • Self-paced
  • Free course
  • Paid certificate
  • Advanced

MIT OpenCourseWare

Marine Power and Propulsion

This course discusses the selection and evaluation of commercial and naval ship power and propulsion systems. It will cover the analysis of propulsors, prime mover thermodynamic cycles, propeller-engine matching, propeller selection, waterjet analysis, and reviews alternative propulsors. The course…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Computational Quantum Mechanics of Molecular and Extended Systems

The theoretical frameworks of Hartree-Fock theory and density functional theory are presented in this course as approximate methods to solve the many-electron problem. A variety of ways to incorporate electron correlation are discussed. The application of these techniques to calculate the reactivit…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Introduction to Organic Synthesis Laboratory

This course, which spans a third of a semester, provides students with experience using techniques employed in synthetic organic chemistry. It also introduces them to the exciting research area of catalytic chiral catalysis. This class is part of the new laboratory curriculum in the MIT Department…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Molecular, Cellular and Tissue Biomechanics (BE.410J)

This course develops and applies scaling laws and the methods of continuum mechanics to biomechanical phenomena over a range of length scales. Topics include: structure of tissues and the molecular basis for macroscopic properties; chemical and electrical effects on mechanical behavior; cell mechan…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Materials Processing

This course is focused on physical understanding of materials processing, and the scaling laws that govern process speed, volume, and material quality. In particular, this course will cover the transport of heat and matter as these topics apply to materials processing.

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Fields, Forces and Flows in Biological Systems

This course introduces the basic driving forces for electric current, fluid flow, and mass transport, plus their application to a variety of biological systems. Basic mathematical and engineering tools will be introduced, in the context of biology and physiology. Various electrokinetic phenomena ar…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Finite Element Analysis of Solids and Fluids II

This course presents finite element theory and methods for general linear and nonlinear analyses. Reliable and effective finite element procedures are discussed with their applications to the solution of general problems in solid, structural, and fluid mechanics, heat and mass transfer, and fluid-s…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Numerical Methods Applied to Chemical Engineering

This course focuses on the use of modern computational and mathematical techniques in chemical engineering. Starting from a discussion of linear systems as the basic computational unit in scientific computing, methods for solving sets of nonlinear algebraic equations, ordinary differential equation…

  • MIT
  • Self-paced
  • Free course
  • Advanced

Massachusetts Institute of Technology

MIT 10.34 Numerical Methods Applied to Chemical Engineering, Fall 2015

View the complete course: http://ocw.mit.edu/10-34F15 Instructor: Prof. William Green Jr. and Prof. James W. Swan Numerical methods for solving problems arising in heat and mass transfer, fluid mechanics, chemical reaction engineering, and molecular simulation, within the context of chemical engine…

Video playlist
  • YouTube
  • 23 videos, 20 hours
  • Self-paced
  • Free video