EdX

Quantum Mechanics for Scientists and Engineers 2 (edX)

Offered by StanfordOnline,
Quantum Mechanics for Scientists and Engineers 2 (edX)

This course covers key topics in the use of quantum mechanics in many modern applications in science and technology, introduces core advanced concepts such as spin, identical particles, the quantum mechanics of light, the basics of quantum information, and the interpretation of quantum mechanics, and covers the major ways in which quantum mechanics is written and used in modern practice.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

This course covers key topics in the use of quantum mechanics in many modern applications in science and technology, introduces core advanced concepts such as spin, identical particles, the quantum mechanics of light, the basics of quantum information, and the interpretation of quantum mechanics, and covers the major ways in which quantum mechanics is written and used in modern practice. It follows on directly from the EEX0001A "Quantum Mechanics for Scientists and Engineers" course, and is also accessible to others who have studied some quantum mechanics at the equivalent of a first junior or senior college-level physics quantum mechanics course. All of the material for the EEX0001A course is also provided as a resource. The course should prepare the student well to understand quantum mechanics as it is used in a wide range of current applications and areas and provide a solid grounding for deeper studies of specific more advanced topics.

What you'll learn

  • Core advanced concepts such as:

. Spin
. Identical particles
. Quantum mechanics of light
. Basics of quantum information
. Interpretation of quantum mechanics

  • The major ways in which quantum mechanics is written and used in modern practice

Prerequisites:
The course is designed to build on a first course on quantum mechanics at the junior or senior college level, so students should have at least that background. The material here is specifically matched to follow on from the "Quantum Mechanics for Scientists and Engineers 1" course, and all the material from that course is provided as background in the online course materials here. No additional background beyond that class is presumed here.

Syllabus

Quantum mechanics in crystals
Crystal structures, the Bloch theorem that simplifies quantum mechanics in crystals, and other useful concepts for understanding semiconductor devices, such as density of states, effective mass, quantum confinement in nanostructures, and important example problems like optical absorption in semiconductors, a key process behind all optoelectronics.

Methods for one-dimensional problems
How to understand and calculate tunneling current. The transfer matrix technique, a very simple and effective technique for calculating quantum mechanical waves and states.

Spin and identical particles
The purely quantum mechanical idea of spin, and how to represent and visualize it. The general ideas of identical particles in quantum mechanics, including fermions and bosons, their properties and the states of multiple identical particles.

Quantum mechanics of light
Representing light quantum mechanically, including the concept of photons, and introducing the ideas of annihilation and creation operators.

Interaction of different kinds of particles
Describing interactions and processes using annihilation and creation operators for fermions and bosons, including the important examples of stimulated and spontaneous emission that correctly explain all light emitters, from lasers to light bulbs.

Mixed states and the density matrix
Introducing the idea of mixed states to describe how quantum mechanical systems interact with the rest of the complex world around us, and the notation and use of the density matrix to describe and manipulate these.

Quantum measurement and quantum information
Introducing the no-cloning theorem, quantum cryptography, quantum entanglement and the basic ideas of quantum computing and teleportation, and returning to the idea of measurement in quantum mechanics, including the surprising results of Bell’s inequalities.

Interpretation of quantum mechanics
A brief introduction to some of the different approaches to the difficult problem of understanding what quantum mechanics really means!

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Global Media, War, and Technology (edX) EdX
University of Queensland,UQx

Global Media, War, and Technology (edX)

Explore the intersection of information technology, violent conflict, and resistance. The experience of war has changed fundamentally – not only for those fighting and reporting, but also for those on the home front. High-tech nations wage wars from a distance using satellite-guided weaponry while non-state military actors, terrorist organizations, and citizen journalists have increasingly added new voices and visual perspectives to the conversation about conflict.

Self Paced
Self-Paced
Science: A Work in Progress (edX) EdX
Smithsonian,SmithsonianX

Science: A Work in Progress (edX)

Science: A Work in Progress - shows how science isn’t produced through one linear method, but through an interconnected set of practices, and examines ways that teachers can make learning science in the classroom more authentic. This online workshop: Science: A Work in Progress, is based on ideas presented in Good Thinking! an original animated series developed by the Smithsonian Science Education Center.

Self Paced
Self-Paced
A Resilient Future: Science and Technology for Disaster Risk Reduction (edX) EdX
École Polytechnique Fédérale de Lausanne

A Resilient Future: Science and Technology for Disaster Risk Reduction (edX)

Discover how science and technology help us reduce disaster risk and increase resilience. This course aims to introduce participants to existing and emerging technologies suitable for disaster risk reduction while promoting the overall aim of sustainable development. The course focuses on three main natural hazards- floods, landslides and earthquakes. It also discusses the challenges and limits of adapting and adopting technologies depending on context (Global North and Global South) with examples from Switzerland, Nepal, Colombia, Philippines and other countries.

Self Paced
Self-Paced
Pre-University Physics (edX) EdX
Delft University of Technology,DelftX

Pre-University Physics (edX)

Prepare for your technical studies by reviewing the fundamentals of physics. Become familiar with the way physics and physics-related topics are taught at university level. Physics is the foundation of many important science and engineering disciplines. Understanding its basics is fundamental for advanced studies. In this course, you will have the chance to review the fundamentals either for your own interest, or to ensure you have a smooth start in the first year of your Bachelor’s degree.

Self Paced
Self-Paced
Science & Cooking: From Haute Cuisine to Soft Matter Science (chemistry) (edX) EdX
HarvardX,Harvard University

Science & Cooking: From Haute Cuisine to Soft Matter Science (chemistry) (edX)

Top chefs and Harvard researchers explore how everyday cooking and haute cuisine can illuminate basic principles in chemistry, physics, and engineering. Learn about food molecules and how chemical reactions can affect food texture and flavor. During each module of this course, chefs reveal the secrets behind some of their most famous culinary creations — often right in their own restaurants. Inspired by such cooking mastery, the Harvard team will then explain the science behind the recipe.

Self Paced
Self-Paced
Climate Change: The Science and Global Impact (edX) EdX
SDGAcademyX,SDG Academy

Climate Change: The Science and Global Impact (edX)

We need to understand the science behind global warming to avoid the most damaging and irreversible climate change impacts on people and planet. Climate change is arguably the greatest challenge of our time. Human activity has already warmed the planet by one degree Celsius relative to pre-industrial times, and we are feeling the effects through record heat waves, droughts, wildfires and flooding.

Self Paced
Self-Paced
On-Ramp to AP* Physics C: Mechanics (edX) EdX
Weston High School

On-Ramp to AP* Physics C: Mechanics (edX)

This course will help the students who have taken intro-level high-school physics to get ready for more advanced courses including AP Physics C: Mechanics. This short course is intended for the high-school students who have taken an introductory-level physics course, acquired some background in Mechanics and intend to take a more advanced course – for instance, AP Physics C.

Self Paced
Self-Paced
The Einstein Revolution (edX) EdX
HarvardX,Harvard University

The Einstein Revolution (edX)

Traces Albert Einstein’s engagement with relativity, quantum mechanics, Nazism, nuclear weapons, philosophy, the arts, and technology. Albert Einstein has become the icon of modern science. Following his scientific, cultural, philosophical, and political trajectory, this course aims to track the changing role of physics in the 20th and 21st centuries.

Self Paced
Self-Paced