You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.
You must be logged in to perform this action.

Atoms to X-rays: How Do Proteins Fold? Theory Meets ExperimentsAtoms to X-rays: How Do Proteins Fold? Theory Meets Experiments

No Strings Attached
Author:
Subject:
Mathematics and Statistics, Science and Technology
Institution Name:
SciVee
Collection:
SciVee
Grade Level:
Post-secondary
Abstract:

The machinery of life depends on proteins--large organic molecules composed of tens, hundreds or even thousands of amino acids bound together and folded into specifically shaped structures. How they fold into these three-dimensional structures is known as the second genetic code and is one of great challenges in science today. Join UCSD biophysicist Jose Onuchic, as he explores how physics, chemistry, biology and mathematics are all being applied to crack the protein folding mystery. Series: Atoms to X-Rays [Science] [Show ID: 5553] UCTV: UC San Diego29 min 51 sec - Jul 25, 2001www.uctv.tv

Languages:
English
Media Format:
Video
Conditions of Use:
Creative Commons Attribution 3.0
Creative Commons Attribution 3.0

Comments:

Send link to this page

The e-mail address to send this link to.
A comment about this link.

Rate and Review

Evaluate Resource What is this?

Common Core Standards

Align this item
Not Yet Aligned

    Add new alignment tag:

    Share

    Tags

    Keywords, descriptive words, interested groups & more