the mouse will have less oxygen consumption and a faster metabolic rate. C. 1) radius= (.15) height=(8.5) (3.14) x (.15) x (.15) x (8.5) = 0.600525 ~ 0.60 O /min. 2) 0.60 0.03755ml/gram/minute 3) A. 0.60ml x 0.004 calories of energy = 0.0024 cal/min B. 0.0024 x 60 x 24 = 3.456 ~ 3.5 cal/day 4) 3.5 x 70‚000 = 245‚000 16 x X = 16x 245‚000 / 16x = 15‚312.5 ~ 15‚ 313cal/day D) My belief was that the mouse being much smaller‚ would have less oxygen consumption
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The three systems in our body that work together are cardiovascular‚ respiratory and digestive systems which supply energy to the cells of the body. I will be describing their role of energy in the body system also I am going to explain the physiology of the three named body systems in relation to energy metabolism. Respiratory System The respiratory system consists of tissues and organs in your body which are formed into groups. The system includes airways‚ lungs‚ blood vessels and muscles attached
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protect the cell from its surroundings‚ the membrane also regulates the movement of substances that go in and out of the cell. This is composed of phospholipid bilayer with embedded proteins. Cell Wall: The cell wall is composed of cellulose‚ this sugar is used as structure and protection. This organelle is only found in plants. The cell wall has three layers the middle lamella‚ primary cell wall‚ and secondary cell wall. The middle lamella contains a polysaccharide that binds cells to one another
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Metabolism Figure 1 above is adapted from João M‚ et al (2012) the chromatographic methodologies for analysis of cocaine and its metabolites which‚ shows the metabolic pathway of cocaine administrated. Cocaine is largely metabolized into two major metabolites benzoylecgonine (BE) and ecgonine methyl ester (EME) and two minor metabolites norcocaine (NCOC) and m- and p-hydroxycocaine (OH-COC) (Goldstein et al.‚ 2009). Benzoylecgonine is primarily produce in the liver by human carbozylerstrase type
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Simply put‚ metabolism is the process of breaking down proteins‚ carbohydrates‚ and fats to yield the energy your body needs to maintain itself. The rate of your metabolism depends on the interaction between the number of calories you consume‚ the number of calories you burn while eating and exercising‚ and the calories you burn based on your individual genetic makeup. How can you increase your metabolism? Well‚ there’s not much you can do about your genes (they only account for a measly 5% of
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M1- Discuss the role of energy in the body‚ describe the process of cell respiration and give three examples of how energy is used in the human body Every living cell needs energy. The form of energy that we use is chemical energy in the form of glucose that we get in our food‚ mainly from carbohydrates such as bread‚ pasta and potatoes. Living cells cannot function without energy‚ which can then lead to death. To release the energy from glucose‚ oxygen is added (oxidise glucose) by breathing continuously
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Describe the physiology of the cardiovascular system in relation to energy. A.T.P is stored‚ chemical energy in the cell‚ without A.T.P we would die. To make A.T.P we need glucose oxygen. Carbon dioxide and heat are the waste products. The main function of the cardiovascular system in relation to energy is to transport the oxygen and glucose to the cells‚ and to transport the waste products such as carbon dioxide and urea (waste product from protein digestion) away from the cells and to the lungs
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Metabolism: Existed evidence notified that changed in the metabolic processes including oxidative stress‚ mitochondrial metabolism and absorption of glucose is concerned to altered MSC differentiation. Mitochondrial metabolism and ROS generation play crucial roles in adipogenic differentiation [37‚ 47-49]. It has been investigated that exogenous hydrogen peroxide increased adipogenic differentiation of MSCs‚ while mitochondrial-targeted antioxidants decreased it. Moreover‚ ROS that generated through
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change the food we eat into ATP to provide our muscles with the energy they need to move • Examine the three metabolic systems that generate ATP 2 Fuel for Exercise : Bioenergetics and Muscle Metabolism Terminology • Substrates – Fuel sources from which we make energy (adenosine triphosphate [ATP]) – Carbohydrate‚ fat‚ protein Measuring Energy Release • Can be calculated from heat produced • 1 calorie (cal) = heat energy required to raise 1 g of water from 14.5°C to 15.5°C • 1‚000 cal
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Explain The Physiology Of Two Named Body Systems In Relation To Energy Metabolism In The Body I am going to explain the physiology of the respiratory and cardiovascular system in relation to the energy metabolism in the body. Energy metabolism is where the nutrients oxygen and glucose are took in and delivered the organs. Energy is needed in order for our body to be able to function. Energy helps break down molecules and to build new molecules. The cardiovascular system consists of the heart‚
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