Catalog Search Results
Publisher
The Great Courses
Language
English
Description
Quantum mechanics gives us a picture of the world so radically counterintuitive that it has changed our perspective on reality itself. In Quantum Mechanics: The Physics of the Microscopic World, award-winning Professor Benjamin Schumacher gives you the logical tools to grasp the paradoxes and astonishing insights of this field.
Publisher
Kino Lorber
Language
English
Formats
Description
The film uses physics, which explains how the universe works, to explain our metaphysics, the story of our values, our institutions, our interactions. Using her own experience and a custom blend of insight and humor, provocation and inspiration, personal story and social commentary, Emily takes her audience through its paradigm shift: from the Fear of Change to the Edge of Chaos. Emily Levine, like her film, was one-of-a-kind. She was a television...
Publisher
The Great Courses
Pub. Date
2018.
Language
English
Description
Continue your tour of Jefferson Lab by learning how scientists design an experiment, get it approved, run it, and then analyze the results. Discover why interpreting the outcome of nuclear collisions is like reconstructing car crashes. One tool relies on the shock wave produced by particles moving faster than light, which is possible in mediums other than a vacuum.
Publisher
The Great Courses
Pub. Date
2009.
Language
English
Description
When two particles are part of the same quantum system, they may be entangled with each other. In their famous "EPR" paper, Einstein and his collaborators Boris Podolsky and Nathan Rosen used entanglement to argue that quantum mechanics is incomplete. You chart their reasoning and Bohr's response.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
Consider why mathematics is such an effective tool for describing nature. Then focus on mathematician Emmy Noether's remarkable insight that links symmetries in the equations of a physical system to conservation laws, such as the conservation of energy and conservation of momentum.
Publisher
The Great Courses
Pub. Date
2009.
Language
English
Description
You explore the mystery of why atoms are stable. Niels Bohr suggested that quantum theory explains atomic stability by allowing only certain distinct orbits for electrons. Erwin Schrödinger discovered a powerful equation that reproduces the energy levels of Bohr's model.
Publisher
The Great Courses
Pub. Date
2020.
Language
English
Description
Compare proof for the reality of atoms with evidence for the existence of Santa Claus. Both are problematic hypotheses! Trace the history of atomic theory and the philosophical resistance to it. End with Bas van Fraassen’s idea of “constructive empiricism,” which holds that successful theories ought only to be empirically adequate since we can never know with certainty what is real.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Turn to the problem of thermal energy flow and volume. This phenomenon causes materials to expand when heated and contract when cooled. Analyze these events at the atomic scale, and study the unusual behavior of water when it freezes - an attribute that is essential to life as we know it.
Publisher
The Great Courses
Pub. Date
2000.
Language
English
Description
Shortly after publishing his 1905 paper on special relativity, Einstein realized that his theory required a fundamental equivalence between mass and energy, which he expressed in the equation E=mc2. Among other things, this famous formula means that the energy contained in a single raisin could power a large city for an entire day.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Explore the phenomenon of mixing - a crucial process for any situation where the product is composed of more than one material. Focus on the case of oil and water, which are notoriously unmixable, and discover what keeps them separate at the molecular level.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
The first inklings of a successful theory of everything will probably arise from symmetries and group theory. Prepare for this epochal moment by digging into these important mathematical ideas. Also, learn to approach proposed theories of everything with fascination, tinged with healthy skepticism.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
Bring together all the concepts studied so far to gauge how close physicists are to a theory of everything. Focus on the shortcomings of the standard model. Then zero in on two burning questions: Why is the mass of the Higgs boson so low, and why does matter predominate over antimatter?
Publisher
The Great Courses
Pub. Date
2018.
Language
English
Description
Study the fusion reactions that take place inside the Sun. First, consider the formidable barrier that hydrogen nuclei must overcome to fuse into helium. Then, see how the mass and temperature of a star govern the types of reactions it can support. One product of stellar reactions is neutrinos, ghostly particles that pass through the Earth (and us) in colossal numbers.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Learn how different materials vary in their ability to absorb heat. This factor is called heat capacity, and it provides a crucial way to correlate energy flow with temperature. Study the heat capacity of various materials, and see how quantum effects reduce heat capacity at very low temperatures.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
Finish by reviewing unified theories since Newton, analyzing a remarkable equation that brings major insights together and represents the current status of a theory of everything. Then look ahead to the next steps, and hear Dr. Lincoln's own research agenda for this momentous quest.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
Einstein is the most famous and influential scientist of modern times. But no one is perfect, and his powerful intuition led him astray in several key areas of physics, which are now among the most fruitful areas of the discipline. Begin your study of Einstein mistakes by looking at what he got spectacularly right, starting with his revolutionary special theory of relativity.
Publisher
The Great Courses
Pub. Date
2018.
Language
English
Description
Explore the current state of fission power, now in its third generation since the dawn of the nuclear age, with a fourth generation in the works. Today's nuclear plants are designed to produce power more cheaply, more safely, with less waste, and less risk of proliferation than earlier designs. Survey the latest technology, from advanced light water reactors to molten salt and thorium reactors.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
Built on the equivalence of inertial and gravitational mass, Einstein's general theory of relativity explains gravity in a surprising new way. See how matter and energy determine the shape of space and time. Investigate confirming evidence for general relativity, including the discovery of gravitational waves in 2015.
Publisher
The Great Courses
Pub. Date
2017.
Language
English
Description
Turn to dark energy, the ghostly energy field that appears to be pushing the universe apart at an ever-greater rate. Learn how this extraordinary discovery was made in 1998, and explore theories that attempt to explain dark energy and its strange consequences.
Publisher
The Great Courses
Pub. Date
2000.
Language
English
Description
The study of motion is not all there is to physics. By the 18th century, scientists were delving into the relationship between the two phenomena. Today, electromagnetism is known to be responsible for the chemical interactions of atoms and molecules and all of modern electronic technology.
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