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- Plant cells can perform both photosynthesis and cellular respiration. These two processes depend upon each other. Describe in detail the relationship between carbon dioxide and glucose in plant cells. Include a description of the processes in which each is used and give the name of the organelle where each of these processes occurs.Plant cells can perform both photosynthesis and cellular respiration. These two processes depend upon each other. Describe in detail the relationship between water and oxygen gas in plant cells. Include a description of the processes in which each is used and give the name of the organelle where each of these processes occurs.Below is a diagram of the cross section of a mitochondrion. Fill in the blanks by choosing words from the Word Bank. Word Bank. Stroma membrane Electron Transport Chain accumulation site The structure at A is The process occurring at C is H+ ******** ADP H* H* ATP Chemiosmosis H+ The area at E is (E) ATP synthase Inner membrane NAD+ + H+ Matrix H* B H+ Vacuole FADH₂ NADH H* Citric acid cycle FAD + 2H+ The structure at B is H* Cyt c Stomate H* Calvin Cycle 1/20₂ + 2H+ Intermembrane space The sequence of events at D is H* H₂O A Outer 0000000000 Proton
- Both cellular respiration and photosynthesis use APT synthase to generate APT. Please describe areas with higher and lower H+ concentration in both organelle. Describe the active and passive movement of protons. Name all membranes and areas involved in this process.Illustrate the relationships among the membranes and compartments of (a) mitochondria and (b) chloroplasts by sketching simple concentric circles to represent the membranes. Choose the appropriate labels for each sketchfrom the following list: inner membrane, outer membrane, thylakoid membrane, stroma, thylakoid lumen, matrix.The following diagrams illustrate the two aqueous spaces and the inner membrane of a mitochondrion. In which diagram is the relative concentration of protons auch that ATP synthesis could occur if ATP synthase were present? (Gold spheres represent protons.) 圈圈圈圈圈 A B D E OA OB OC OD OE intermembrane space Anner membrane matrie
- The figure below shows an illustration of a mitochondrian. Mustration of a mitochondrion Which of the following best describes the relationship between the structure and function of the mitochondrion? A B с D The shape of the mitochondrion Increases its material-exchange efficiency by maximiz ing its overall volume relative to its surface area. The double-membrane structure of the mitochondrion allows it to maintain its relatively acidic environment in which nutrients can be digested. The folds of the mitochondrion Inner membrane increase its material-exchange effi- ciency by maximizing its surface area relative to its volume. The specific structure of the mitochondrion Inner membrane allows it to correctly guide the folding of proteins into their functional shape.Which of the following statements is most correct? The electron transport chain - A: generates a pH gradient that reduces O2 to H2O B: generates a proton gradient across the outer mito membrane C: generates a proton gradient across the inner mito membrane D: uses the energy stored in high energy electron carriers to synthesize ATP E: establishes a membrane potential across the outer mito membraneWhat is ATP? Where is the energy held in this molecule? Describe the generalized reversible reaction for release of energy from ATP and explain the role of ATP in the cell. What organelle is responsible for aerobic production of ATP? What are the other two methods of ATP production in the cells? What is cellular respiration?
- 12. Use Figure 4 for questions a-c below. 114 ATP synthase matrix intermembrane space Figure 4: Sketch of a mitochondrion https://upload.wikimedia.org/wikipedia/commons/1/1a/Schema mitochondrion basic.svg Bionet, CC BY-SA 4.0 , via Wikimedia Commons a. Add to the sketch to show a H* concentration gradient in an active mitochondrion. (Sketch more H* in the appropriate space. Sketch less H* in the appropriate space.) 4+ b. Sketch an arrow to represent the direction that protons flow (via diffusion) through ATP synthase. c. If the concentration of protons was equal on each side of the membrane, how would that affect the flow of protons through ATP synthase? How would that affect ATP production from glucose?Consider the following diagram when answering the questions about cellular respiration. (a) Label the diagram. (b) Considering the electron transport chain. Why type of cell transport is happening at the ETC? Explain. (c) What type of cell transport is happening at ATP synthase? Explain. B A D EFor each of the statements below, indicate whether they are true or false and then in detail explain why the false statements are incorrect, making reference to the relevant cell processes and/or molecules. A. In cellular respiration the ETC transfers electrons via redox reactions whereas in photosynthesis the ETC transfers electrons using light. B. In cellular respiration the ETC creates a proton gradient with the higher concentration on the outer side of the inner membrane whereas in photosynthesis the ETC creates a proton gradient with the higher concentration on the inner side of the thylakoid membrane. C. In cellular respiration the ETC gradient is used to power ATP production by oxidative phosphorylation whereas in photosynthesis the ETC gradient is used to power ATP production by substrate level phosphorylation.