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- Dlagram 4: The Light Reactions of Photosynthesis STROMA ow soncedration Oytnho e mples Photoeystem B Photoeystan I NADP Light OPM THYLAKOID SPACE gh r cenentration Cavin Cyele Thylakoid membrane ATP STROMA dow H ooncentration) ythse ADP Diagram 4 shows a single thylakoid membrane taken from a chloroplast inside of a leaf cell. The events of the light dependent cydle that take place along the thylakoid membrane are shown. ight energy is captured by ATP synthase O Photosystems I and II D NADP+ reductase O The thylakoid membrane's lipid structuresone < A olchs.quiz-Iti-pdx-prod.instructure.com AA 55:15 Time Remaining Return Diagram 4: The Light Reactions of Photosynthesis STROMA Jow H concentration) Cytochrome complex Photosystem II Photosystem I Light NADP reductase 4H Light NADP H NADPH THYLAKOID SPACE (high H concentration) +2 H To Calvin -Cycle Thylakold membrane ATP- synthase STROMA (low H concentration) ADP ATP Diagram 4 shows a single thylakoid membrane taken from a chloroplast inside of a leaf cell. The events of the light dependent cycle that take place along the thylakoid membrane are shown. In the Thylakoid space water is split into O 02 H* and electrons O Ht, ATP and O2 O Photosystem II, electrons and oxygen O 02 and chlorophyll PreviousEayside Foe Pe SSchoology S Schoology Eayside Fome Page Sudert Eoolrarks The Calvin Cycle is part of O Glycolysis O Krebs Cycle O Electron Transport Chain Light Independent Reactions
- AURESCO P Carbaxylase 3 CO2 1. Carbon dioxuide 60 reduced RUBP 3-phosphogh CALVIN CYCLE 2.3.Phospho- Shycerate is reduced to G3P 3 ADP 3 RUBP Is regenerated trom G3P 3 ATP 5 G3P G3P 16SP Glucose (six carbons) Co, is needed in theCalvin Cycle in order to Donate a carbon to the reaction break down ATP transfer chemical energy go back to the light-dependent reactionplyoolysls HOYN O 2 FADH Krebs cycle 2 ATP electron transport chain 00 CoA acetyl coenzyme A 0000 oxaloacetic acid 1. citric acid NAD NADH NADH NAD 2. 6. O0చఉ 0 a-ketoglutaric acid malic acid FADH FAD 5. 3. NAD NADH ADP succinic acid 4. a-ketoglutanic acid denvative ATP"RUBISCO RuBP Carbaxylase 3 CO, 1. Carbon dioxide is reduced 60000 RUBP 3-phosphoglycera a 3C 6. CALVIN CYCLE 6. 3 ADP 3. RUBP is 2. 3-Phospho- reverse rea regenerated from G3P. glycerate is reduced to of glycol З АТР 6 NA G3P 6N 5 G3P G3P 1 G3P Glucose (six carbons) ATP and NADPH are being used during the Calvin Cycle reactions. Select the statement that exp in the reaction. NADPH makes RUBP restart the Calvin Cycle and ATP joins CO2 to RUBP ATP is donating electrons and NADPH donates a phosphate to the reaction Chemical energy is being transferred from ATP and NADPH to the Calvin Cycle reaction. ATP and NADPH donate carbons to assist in glucose formation
- Photosyntheis equation 6CO2 Carbon dioxide 6H20 Light C6H1206 , 602 Sugar Water Oxygen Aerobic cellular respiration Chemical Equation - Aerobic Respiration CH1206 + 6 O2→ 6 CO2 + 6 H;O + 36 ATP Anaerobic respiration Lactic Acid Fermentation C,HO 20C H¸O, + 2 ATP Alcohol Fermentation C,H,0 2C,H,OH + 2CO, + 2 ATP What chemical reaction happens in your body that causes you to breathe out carbon dioxide? Explain your answer by talking about the inputs and outputs of the chemical reaction. (Level 3) étv MacBook Air 80 DII DD F3 F4 FS F7 F8 F9 F10 FV # $ % & 3 4 9. 7 8 E R Y U F G H. J K L C V M B ト"RUBISCO RUBP Carbaxylase 3 CO2 3 P-OO00OD 1. Carbon dioxide is reduced RUBP 3-phosphoglycerate a 3C acid 6 ATP CALVIN CYCLE 3 ADP 6 ADP 3. RUBP is regenerated from G3P. 2.3-Phospho- glycerate is reduced to G3P. reverse reactions of glycolysis З АТР 6 NADPH 6 NADP+ + 6P, 6000 P 5 G3P G3P 1 G3P Glucose (six carbons) Look at the top of the diagram and find RUBISCO. Select the passage that gives the best explanation as to what would happen if RUBISCO was missing from the Calvin Cycle reaction. Glucose production would increase. RUBP and CO, would not be able to combine. ATP wold not be broken down into ADP and P. RUBP and CO2 would combine at a faster rate. ООООPhotosyntheis equation 6H20 Light C6H1206 , 602 Охудen 6CO2 Carbon dioxide Water Sugar Aerobic cellular respiration Chemical Equation - Aerobic Respiration CH1206 + 6 O2→ 6 CO2 + 6 H2O + 36 ATP Anaerobic respiration Lactic Acid Fermentation CH,20 2C,H,O, + 2 ATP Alcohol Fermentation C,H,,0 2C,H,OH + 2CO, + 2 ATP What chemical reaction happens in your body that causes you to breathe out carbon dioxide? Explain your answer by talking about the inputs and outputs of the chemical reaction. (Level 3) + tv MacBook Air DII DD 80 F8 F9 F10 F4 F5 F6 F7 F3 #3 2$ & 3 4 9. 7 Y F H J * 00 ト
- wtermenre ee SAGP Mitochondrial fMatrix FADH, FAD NADH seydsgeess ATP somplex mpler see comple Copyright 2001 Ber Cummings i of Adn Hsiey Langman, ne. The Krebs cycle is important to the electron transport chain because the Krebs cycle will move protons through the proteins of the inner membrane make electron and proton carriers that will be used by the electron transport chain. provide pyruvate to the Electron Transport Chain which is used in ATP formation. remove water from the Electron Transport Chain Next PreviousMost of the energy that aerobic respiration releases from glucose ends up in ______. a. NADH b. ATP c. heat d. electronsPut the following pathways in the order they occur during aerobic respiration. a. electron transfer phosphorylation b. acetylCoA formation c. citric acid cycle d. glycolysis