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11/6/2013 What are the 2 parts of light reactions? What goes into the light reactions? What comes out? What is the process called that makes ATP? ▪ What enzyme is used? In the Calvin Cycle: What goes in? What comes out? What powers the Calvin Cycle? Cellular Respiration -Process where cells make ATP by breaking down organic compounds (such as glucose) -Autotrophs and heterotrophs both undergo respiration Every time you move a muscle, think, breathe, replicate your DNA, every time your heart beats - you use ATP to do this work! -Occurs in the cytoplasm and mitochondria How is this equation different from photosynthesis? Overall equation: C6H12O6 + 6O2 6CO2 + 6 H2O + ATP 1 11/6/2013 Aerobic Pathways take place in the presence of oxygen Anaerobic Pathways take place in the absence of oxygen Both pathways: 1) Begin with Glycolysis 2) Produce a Pyruvic Acid Intermediate 3) Differ in ATP production and final product If an organism lived in an O2 deficient environment it would undergo the _____________ pathway. 2 11/6/2013 •Location: Cytosol (cytoplasm) •Description •6 carbon molecule of glucose is split •Anaerobic (no oxygen needed) If oxygen is present then Aerobic respiration occurs If oxygen is not available then cells continue to perform glycolysis to make 2 ATPs •Reactant: C6H12O6 (glucose) •Products: 2 Pyruvic Acids (3-carbon molecule) & 2 ATP •The pyruvic acid will enter mitochondria for further processing Krebs Cycle: • Series of reactions that occur in mitochondrial matrix • Reactants: Pyruvic acid (from glycolysis) • Products: 2 CO2 and 2 ATP 3 11/6/2013 The Krebs Cycle begins with pyruvic acid which was produced by ______________. The Krebs cycle occurs in the __________________ _____________. Write the chemical equation for Cellular Respiration. Both Symbolically and In English Glycolysis: Where does it take place? What are the reactants? the products? Does it require oxygen? 4 11/6/2013 Krebs Cycle: • Series of reactions that occur in mitochondrial matrix • • • • • Reactants: Pyruvic acid (from glycolysis) • Products: 2 CO2 and 2 ATP The “big ATP payoff” Location: cristae (inner membrane) of mitochondria Reactants: O2 Products: H2O, 34 ATP 3. e- are transferred down the ETC. 4. Energy released by this transfer pump H+ from the matrix to inter-membrane space. 5. O2 accepts the e- at the end of the ETC making H2O. This build up of protons create a mini battery 5 11/6/2013 6. The only exit for these protons is through ATP synthase. 7. It spins providing energy for converting ADP into ATP This process is called chemiosmosis Total Energy Production: 36 ATP H2O __________ is produced at the end of the electron transport chain in the mitochondria Chemiosmosis is the process responsible for ______________ producing the ATP ___________ accepts the electron to make Oxygen water at the end of the ETC 2 ATP from glycolysis 2 ATP from Kreb’s Cycle 34 ATP from ETC (chemiosmosis) 38 ATP Made In Total - 2 ATP for transporting pyruvic acid into the Mitochondria from Glycolysis 36 Net ATP Made Aerobic Respiration is 20 times more efficient than Glycolysis alone. 6 11/6/2013 Anaerobic pathway (fermentation) = Glycolysis 2 ATP Aerobic Pathway = Glycolysis + Kreb’s Cycle + ETC 36 ATP 7 11/6/2013 Fact Fact: Our bodies uses ATP at the rate of about 1 million molecules per cell per second. Classwork: Cell Respiration Diagram, Homework: Make 2 Thinking Maps Double Bubbles There are more than 100 trillion cells in the human body. That’s about 100,000,000,000,000,000,000 ATP molecules used in your body each second! Homework: Cell Respiration Steps, ▪ Cellular Respiration vs. Photosynthesis ▪ Aerobic Respiration vs. Anaerobic Respiration (Glycolysis) Intervention Wednesday 2:45-3:30 pm & Thursday 6:50-7:35 am Discovery Education Cell resp and Glycolysis From food to ATP Intervention Wednesday 2:45-3:30 pm & Thursday 6:50-7:35 am 8 11/6/2013 Process Location Reactants Products # of ATP Made Glycolysis Kreb’s Cycle Electron Transport Chain 9