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Crystals, x-rays and proteins : comprehensive protein crystallography / by Dennis Sherwood, Jon Cooper.

By: Contributor(s): Material type: TextTextPublication details: Oxford : Oxford University Press, 2011.Description: 1 online resource (xvii, 621 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780191035524
  • 0191035521
Subject(s): Genre/Form: Additional physical formats: Print version:: Crystals, X-rays, and proteins.DDC classification:
  • 548.83 22
LOC classification:
  • QD945
NLM classification:
  • 2011 I-928
  • QU 55
Online resources:
Contents:
1. The crystalline state and its study -- 2. Vector analysis and complex algebra -- 3. Crystal systematics -- 4. Waves and electromagnetic radiation -- 5. Fourier transforms and convolutions -- 6. Diffraction -- 7. Diffraction from one-dimensional obstacles -- 8. Diffraction from a three-dimensional lattice -- 9. The contents of the unit cell -- 10. Experimental techniques: sample preparatio -- 11. Experimental techniques: data collection and analysis -- 12. The Phase problem and the Patterson function -- 13. Molecular replacement -- 14. Solving the phase problem experimentally -- 15. Refinement -- 16. Complementary diffraction methods.
Summary: Information derived from X-ray crystal structures of biological molecules allows us to explain their functions in living organisms and to develop drugs to treat disease. This book describes the principles and practice of X-ray diffraction as a key technique at the forefront of new discoveries in biology and medicine.
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Electronic-Books Electronic-Books OPJGU Sonepat- Campus E-Books EBSCO Available

Includes bibliographical references and index.

Information derived from X-ray crystal structures of biological molecules allows us to explain their functions in living organisms and to develop drugs to treat disease. This book describes the principles and practice of X-ray diffraction as a key technique at the forefront of new discoveries in biology and medicine.

1. The crystalline state and its study -- 2. Vector analysis and complex algebra -- 3. Crystal systematics -- 4. Waves and electromagnetic radiation -- 5. Fourier transforms and convolutions -- 6. Diffraction -- 7. Diffraction from one-dimensional obstacles -- 8. Diffraction from a three-dimensional lattice -- 9. The contents of the unit cell -- 10. Experimental techniques: sample preparatio -- 11. Experimental techniques: data collection and analysis -- 12. The Phase problem and the Patterson function -- 13. Molecular replacement -- 14. Solving the phase problem experimentally -- 15. Refinement -- 16. Complementary diffraction methods.

Print version record.

English.

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