This course is comprised of a six-quarter sequence of classes that will explore the essential theoretical foundations of modern physics. The topics covered in this course sequence will include classical mechanics, quantum mechanics, the general and special theories of relativity, electromagnetism, cosmology, and black holes. While these courses will build upon one another, each course also stands on its own, and both individually and collectively they will let students attain the “theoretical minimum” for thinking intelligently about modern physics.
Quantum theory governs the universe at its most basic level. In the first half of the 20th century physics was turned on its head by the radical discoveries of Max Planck, Albert Einstein, Niels Bohr, Werner Heisenberg, and Erwin Schroedinger. An entire new logical and mathematical foundation—quantum mechanics—eventually replaced classical physics. We will explore the quantum world, including the particle theory of light, the Heisenberg Uncertainty Principle, and the Schroedinger Equation.
This is a continuation of the introductory course on the principles and methods of physics for students who have good preparation in physics and mathematics. This course covers electricity, magnetism, optics and quantum mechanics.
(CHEM 125) This is the first semester in a two-semester introductory course focused on current theories of structure and mechanism in organic chemistry, their historical development, and their basis in experimental observation. The course is open to freshmen with excellent preparation in chemistry and physics, and it aims to develop both taste for original science and intellectual skills necessary for creative research.
This course was recorded in Fall 2008.
The Ocean is important to all life, including yours.
Welcome to the video collection of the Smithsonian’s Ocean Portal – a unique, interactive online experience that inspires awareness, understanding, and stewardship of the world’s Ocean, developed by the Smithsonian Institution’s National Museum of Natural History and more than 20 collaborating organizations.
For more ocean news, visit the Ocean Portal at www.ocean.si.edu!
This course seeks to further understanding of the thought processes of individuals who break society’s laws. Biological, psychological, educational, and situational factors are examined along with the types of crimes committeed.
The 100 UCLA Subjects in Neurosurgery constitute a selection of a hundred relevant topics developed by the UCLA Department of Neurosurgery Faculty as an educational tool for residents of all training levels in Neurological Surgery. In addition to the 100 curriculum subjects, this webcast will allow access to the radiology, pathology, anatomy, and ethics conferences of the program, prepared by faculty of UCLA Neurosurgery and affiliated faculty from the departments of Radiology, Pathology, and the David Geffen School of Medicine.
Experts from every subspecialty present basic principles, current concepts, and extensive reviews, as well as their own experience and developments in the different fields of Neurosurgery.
These podcasts are specifically geared to provide an overview of various topics that
are discussed in CHM 1025 (Introductory Chemistry)and CHM 1045 (General Chemistry I).
Can law change human behavior to be less environmentally damaging? Law will be examined through case histories including: environmental effects of national security, pesticides, air pollution, consumer products, plastics, parks and protected area management, land use, urban growth and sprawl, public/private transit, drinking water standards, food safety, and hazardous site restoration. In each case we will review the structure of law and evaluate its strengths and weaknesses.
Educational podcasts created for and by emergency Medicine residents.
This podcast does not represent the views of Stroger Hospital, Cook County Human Health Services or the Stroger Emergency Medicine Residency
Most of the major categories of adaptive behavior can be seen in all animals. This course begins with the evolution of behavior, the driver of nervous system evolution, reviewed using concepts developed in ethology, sociobiology, other comparative studies, and in studies of brain evolution. The roles of various types of plasticity are considered, as well as foraging and feeding, defensive and aggressive behavior, courtship and reproduction, migration and navigation, social activities and communication, with contributions of inherited patterns and cognitive abilities. Both field and laboratory based studies are reviewed; and finally, human behavior is considered within the context of primate studies.