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Chapter 5

Chapter 5

Chapter 5. ATP. Cell Respiration & Metabolism. 5-1. ATP. Fig 4.15. 4-27. Oxidation-Reduction continued. Fig 4.17. 4-29. Metabolism. Is all reactions in body that involve energy transformations Divided into 2 categories: Catabolism breaks down molecules & releases energy

By fawzia
(160 views)

SYNTHESIS OF ATP

SYNTHESIS OF ATP

SYNTHESIS OF ATP. PETER MITCHELL AND JAGENDORF AND URIBE. PETER MITCHELL. PRIOR KNOWLEDGE The energy of electron transfer was stored as a stable high potential intermediate, a chemically more conservative concept. (Encyclopedia Britannica Online, Nov. 2010)

By kylia
(170 views)

Respiration: ATP and Coenzymes

Respiration: ATP and Coenzymes

Respiration: ATP and Coenzymes. What do you already know?. What is ATP? Where do we get energy from? If you compared the rate of respiration of a bacterial cell at 20 o C and 35 o C what would you expect to find? What would you expect to find at 70 o C? Explain

By ken
(237 views)

Electron Transport Chain and Oxidative Phosphorylation

Electron Transport Chain and Oxidative Phosphorylation

Electron Transport Chain and Oxidative Phosphorylation. Dr. Sooad Al- Daihan Biochemistry department . Introduction.

By morgan
(260 views)

Peter Mitchell

Peter Mitchell

Peter Mitchell. and the Chemiosmotic Theory. Who is Peter Mitchell?. Was born 29 th September, 1920 and died 10 th April 1992. Was a British biochemist and a Fellow of the Royal Society.

By arden
(169 views)

Chapter 14 - Electron Transport and Oxidative Phosphorylation

Chapter 14 - Electron Transport and Oxidative Phosphorylation

Chapter 14 - Electron Transport and Oxidative Phosphorylation. Oxidative phosphorylation is the process by which NADH and QH 2 are oxidized and ATP is formed. NADH and QH 2 come from. (1) Aerobic oxidation of pyruvate by the citric acid cycle

By zoey
(176 views)

Biological Membranes and Energy Production

Biological Membranes and Energy Production

Biological Membranes and Energy Production. Membranes as Energy Transducers. Inner leaflet. Outer leaflet. Asymmetry in chemical environments. Integral membrane proteins allow formation of asymmetrical environments. Membrane Bilayer. Electrochemical Gradients can provide Energy.

By breck
(198 views)


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