¬¬¬Biology Exam 4 Energy III – Cellular Respiration (Krebs Cycle and Electron Transport Chain) A. The Krebs Cycle a. Energy i. The net gain of 2 ATP and 2 NADH represents an effective transfer of 20 kcal of energy to ATP (about 10 kcal each) about 80 kcal of energy to NADH (about 40 kcal each)‚ for a total of about 100 kcal ii. Complete oxidation of glucose results in the release of 684 kcal of energy‚ significant energy still remaining in pyruvate b. Eukaryotes i. Pyruvate is transported
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cells in a process called _________‚ during which energy stored in their chemical bonds is used to power the production of ATP. 4. Glucose is broken down to carbon dioxide and water in organisms which breathe air in a process called as ________ respiration. 5. In glycolysis‚ a major portion of the energy remains in the final product‚ which is called ________. 6. For further derivation of energy‚ aerobic cells must convert pyruvate into acetyl coenzyme A by stripping off a C02 molecule. This
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A connection between the seven individuals is that they all resided in the same neighborhood and/or family (Gazdik‚ 2010). The function of the cell that looked like it was interrupted was cellular respiration‚ which is a function of the mitochondria. Cellular respiration is defined as the process of cellular level breathing‚
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BioLab3 Lab Report 7 Cellular Respiration Answer Key Student Name: I. The ATP Cycle Define the following terms: Autotroph Heterotroph Aerobic respiration Anaerobic respiration Complete the chart below: Letter Defining Term A B C D II. Anaerobic Respiration Define the following terms: Alcoholic fermentation EXERCISE 1 – Alcoholic fermentation At intervals of 20‚ 40‚ and 60 minutes‚ the tubes are removed. Record the
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saturated in it than the other dry peas it would consume more oxygen because water is a key molecule in the facilitation of certain reaction and processes especially in cellular respiration. In conclusion‚ the lab demonstrated many critical things relating to cellular respiration. It showed that the rates of cellular respiration are greater in germinating peas than in non-germinating pea which does support my hypothesis. In another experiment I discovered about germinating peas vs non germinated
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Lesson 5/ Key Questions: 18. In the morning‚ when you wake up‚ before you eat‚ go for a walk ‚ swim‚ something for around 3-10 minutes. It will help get your metabolism started and work better through out the day. I would suggest cutting those 2 beers a night into one‚ or maybe 2 every other day‚ or 2 a week. I would eat something like oatmeal in the morning‚ or simple toast with eggs and HAM. Bacon is high in fat and calories. And always get fruit. And Change up your lunch. Make a sandwich. or
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Energy is essential for making new cells to enable growth‚ repair‚ and development to ensure the proper functioning of the body. Energy can be obtained from the food we eat (mainly from carbohydrates and fats) a process called respiration. Respiration is the chemical process whereby energy is obtained from the body of a living organism with or without the use of oxygen. Energy is also essential in the body to enable breathing and take in oxygen. Carbohydrates are broken down into glucose
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converted to glucose first. There are two ways in which a cell or cells can gain energy – cellular respiration or fermentation. There are two types of fermentation and that is alcoholic fermentation where pyruvate‚ produced in glycolysis‚ is converted into lactate‚ and also lactic fermentation used by plants and some fungi and they convert pyruvate to ethanol and carbon dioxide. Cellular respiration is a fundamental‚ catabolic process by which food is broken down in order to produce high energy
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Photosynthesis Photosynthesis and cellular respiration are often mistaken as the same thing. Although they are similar in many ways‚ photosynthesis and cellular respiration are the exact opposite of each other. Not figuratively‚ but literally the reverse (Photosynthesis). They incorporate the others products while adding some outside energy to create a never ending cycle. This brings us to the photochemical and biochemical reactions of photosynthesis and cellular respiration. In an ordinary photochemical
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event of muscle contraction. (understand what occurs at each event) -Know the difference between repolarization vs depolarization -Know the Three ways to generate ATP in skeletal muscle fiber: phosphagen system‚ anaerobic cellular respiration‚ aerobic cellular respiration -Understand oxygen debt -Know the difference between slow and fast twitch fibers -Know the difference between Oxidative fibers & Glycolytic fibers -Know the difference in Isometric contraction and Isotonic contraction -Know
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