10–120 seconds. Furthermore, coenzymes involve in oxidative deamination while oxidizing agents do not involve in nonoxidative deamination. The oxidative system is a relatively slow system for producing ATP and only works in the presence of oxygen. So non-oxidative processes such as ATP-PC (quickly depleted) and non-oxidative glycolysis enter the game. Oxidative and nonoxidative deamination are two types of deamination … b. Non-Oxidative or Anaerobic Energy System. False. Once CP is depleted, other energy systems must assist in the ATP generating process. Non-Oxidative or Anaerobic Energy System Glycogen fairly rapidly recycles ATP, but it is slower than from CP. The non oxidative or anaerobic Energy System is used for high-intensity activities lasting about 10 seconds to 2 minutes. In this phase, as the term indicates you are using oxygen to fuel the breakdown of carbohydrates first, free fatty acids second and if the exercise continues long enough -protein. Training this energy system is great for fat loss, muscle building, and improving overall body composition. The Immediate Energy System. After approximately 2 minutes, the body shifts to the final energy system. The aerobic system is the most utilized of the three. Non-Oxidative Energy Sources. True. So oxidative processes (using fat mainly I guess) are running at 100% (VO2max) but are not sufficient to produce ATP quickly enough (the ATP production rate is not enough to compensate ATP use rate). 3. The Immediate Energy System in skeletal muscle utilizes several integrated chemical reactions to liberate energy for cellular work in an explosive, rapid sequence, but then quickly put the ATP back together again. 20. Energy System #3: Aerobic Oxidative System. The main difference between oxidative and nonoxidative deamination is that oxidative deamination is coupled with oxidation whereas nonoxidative deamination does not proceed through oxidation. d. 5–60 minutes. As the name implies, the non-oxidative energy system does not require oxygen to generate ATP. Anaerobic metabolism produces lactate. The oxidative energy system produces ATP in structures called a. alveoli. The non-oxidative energy sources are glucose and glycogen, which are broken down in the process of glycolysis and glycogenolysis respectively. When needed, this energy system provides enough ATP to sustain a short- duration, explosive activity, approximately 10–20 seconds or less. 3 or fewer seconds. c. 3–5 minutes. b. Aerobic Energy System. False. The reaction is as follows: Glucose → 2 ATP+2 Lactate. The non-oxidative energy systems pale in comparison to the ability of the oxidative energy system to rephosphorylate ATP and reduce the hydrogen threat inside the body. Glycogen is stored in the muscle cells. If your body’s energy requirements require effort for over 2 minutes, your body must add oxygen to the mix. Instead, the cells where the ATP is produced require glucose (carbohydrates that have been broken down) as the fuel source. One of the interesting things about the oxidative system is that it actually powers itself through the motion of … It is the main energy system for … The oxidative system copes with lower output work for longer durations of time–such as a road race. Unlike the other two systems, the aerobic system requires oxygen and takes much longer to overload. The energy system that uses ATP and creatine phosphate fuels the body for long exercise sessions. Anaerobic Metabolism (Anaerobic-Glycolitic) is the non-oxidative process of recycling of ATP from glycogen. Energy System 3: Oxidative (Aerobic) System The first or third system is the Oxidative phase. Answer: b Page: 64 Topic area: Basic Physiology of Cardiorespiratory Endurance Exercise Bloom’s Taxonomy: Knowledge 21. It provides energy for low intensity activities that last anywhere from two minutes to a few hours. 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