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- We often describe respiration by the simple equation of 6 O2 + C6H1206 - 6 CO2 + 6 H20. However, as we've now covered, there's way more going on than what's represented by this one equation. Summarize the entire process of energy generation starting from glucose, covering the substances produced through each process involved (no need to summarize the individual steps), where these processes take place, how they interact with each. other, changes in energy and oxidation along the way, and what happens to the molecules produced in the end.plz explain in details. Organisms must do tasks in order to survive. This work requires either light for photosynthesis or the chemical potential energy of organic molecules as an energy input. Explain the necessity for energy in living organisms and provide two (2) examples. Explain the oxidative phosphorylation process, particularly the involvement of oxygen. Discuss the generation of a low yield of ATP from anaerobic respiration and the formation of lactate in mammals.To examine: Whether the statement, "The three respiratory enzyme complexes in the mitochondrial inner membrane tend to associate with each other in ways that facilitate the correct transfer of electrons between appropriate complexes.", is true or false.
- Complete a detailed diagram of all the steps of Cellular Respiration indicating the places in which they occur in the cell, their ingredients, products, and metabolic intermediates.discuss some similarities and differences between the combustion of glucose and the metabolism of glucose through cellular respirationDescribe with a summary picture the aerobic respiration from glucose (CHO) all the way to Co2 and water. Highlight, with yellow the flow of H (and then electrons and protons) and in red the ATP Include: inner membrane, outer membrane, matrix, intermembrane space glycolisis, Krebs cycle (citirc acid), e.t.c. (oxidative phosphorilation) ATP synthase, NADH dehydrogenase complex, cyt b-c1complex, cyt oxidase complex, ubiquinone, cytochrome-c glucose, pyruvate, acetyl-Co-A, H2O, O2, CO2, NADH, NAD+, FADH2, e-, H+, ATP, ADP +Pi direction of the arrows, inner membrane potential, gradient of protons, inner membrane transporters, outer membrane porins
- Select the correct statements about cellular respiration (select all that apply) 1) Chemical energy in glucose is transformed to the form of ATP 2)The over all equation for cellular respiration is C6H12O6 + 6O2 —> 6CO2 + 6H2O + 36ATP 3)Cellular respiration takes place in the ribosomes 4) The phases include glycolysis, the kraft cycle, and the electron transport 5) The overall equation for cellular respiration is glucose + oxygen —> carbon monoxide + water + ADP 6) The phases include glycolysis, the citric acid cycle, and the electron transport chain 7) The breakdown of ATP drives the synthesis of glucoseExplain cellular respiration by: Describing the equation and identifying the reactants and products Identifying the source of the reactants, and result location of carbon dioxide. Describing the purpose of cellular respiration Use respiration to connect food, mass, and energy to each other.State whether the following statements are True or False, If False, explain why 5.1 Oxaloacetate is formed by the oxidation of L-malate 5.2 An overstimulation of the citric acid cycle will cause an overproduction of oxygen 5.3 The citric acid cycle occurs in the mitochondrial matrix of prokaryotes and eukaryotic 5.4 NADH and ADP are high energy electron carriers which can be utilised in the electron transport chain
- In nature, there are some organisms that are unable to perform aerobic respiration in the presence of oxygen. What could be the possible reason(s) behind this phenomenon? (Answe in 120 words, 5 reasons would be helpful) ThanksWhich one of the following statements about oxidative respiration is false? Answer: It occurs through the oxidation of oxygen as the final electron acceptor. Can someone please explain why this answer is correct? Thank you.Which of these is the correct equation (not including energy sources or products) for CELLULAR RESPIRATION : 6C6H1206 + 602 -> 6CO2 + 6H2O C6H1206 + O2 -> CO2 + H2O C6H1206 + 602 -> 6CO2 + 6H2O 6H2O + 602 -> 6CO2 + C6H12O6