ROD CELLS Rod cells‚ or rods‚ are photoreceptor cells in the retina of the eye that can function in less intense light than the other type of visual photoreceptor‚ cone cells. Rods are concentrated at the outer edges of the retina and are used in peripheral vision. On average‚ there are approximately 125 million rod cells in the human retina.[1] More sensitive than cone cells‚ rod cells are almost entirely responsible for night vision. STRUCTURE AND FUNCTION Rods are a little longer and leaner
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There are two types of cell transport mechanisms. These types of transports are passive and active transport. The difference between active and passive is that passive does not require energy and active does require energy. The reason passive does not require energy is because it travels down a concentration gradient. On a concentration gradient molecules naturally move from high to low concentration. In active transport‚ molecules move from low to high concentration. There are three different types
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I couldnt believe it. I had no clue on what I had got myself into. I thought I was in a nightmare. Everything was so much larger than me. I felt like I was this tiny spec on a flower. My life had suddenly flashed before my eyes. I had a feeling that my last breath was about to par take. I knew that I should have never drunk that stuff that my friend gave me. She said that it would take me to another world‚ but I didnt take her seriously. I thought it was just her joshing around. How could a normal
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Assignment 1: Cell Membranes and Temperature Background Theory Beetroot contains betalain pigments within it’s vacuole‚ which gives it it’s purple-red colour‚ it’s this pigment which leaks out as the beetroot is heated and the cells membrane begins to break down. The practicals aim is to show the effect of temperature on the cell membrane by observing the colour change of the water the beetroot was placed in. The cell membrane is important as it controls the substances enters and leaves the cell with
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Citric acid cycle From Wikipedia‚ the free encyclopedia Jump to: navigation‚ search [pic] [pic] Overview of the citric acid cycle The citric acid cycle — also known as the tricarboxylic acid cycle (TCA cycle)‚ the Krebs cycle‚ or the Szent-Györgyi-Krebs cycle‚ [1][2] — is a series of enzyme-catalysed chemical reactions‚ which is of central importance in all living cells that use oxygen as part of cellular respiration. In eukaryotic cells‚ the citric acid cycle occurs in the matrix of the mitochondrion
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| | | | | The Life Cycle of the Sperm and Egg From Beginning to End | Adianez LabrielPSY 265 Phoenix University December 14‚ 2012 | Table of Contents The Life Cycle of the Egg 1 The female sex organ 1-2 The Male Sex Organ. 3 The female and male sex organs and their functions………....……..4 The Life Cycle of the Sperm and Egg From Beginning to End When asked how did I get pregnant? It seems like a rhetorical question. Of course many would say well you had sex Watson
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21 Concentrating Solar Thermal Power 21.1 21.2 Introduction and Context................................................ 21-2 Solar Concentration and CSP Systems ........................... 21-6 Why Use Concentrating Solar Energy Systems? Dependence of Efficiency on Temperature 21.3 21.4 21.5 21.6 Solar Concentrator Beam Quality................................... 21-9 Solar Concentration Ratio: Principles and Limitations of CSP Systems........................................... 21-13 Solar Thermal
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STEM CELL RESEARCH AND THERAPYAND ITS IMPACTS ON SOCIETY Abstract There are several types of stem cells being used in stem cell research and therapy today. They are embryonic‚ adult and induced pluripotent stem cells. Each will be discussed further. This topic has stirred much moral‚ ethical and political debate as whether cells from fetuses should be used in this research. This impacts governmental policies on laws and funding. Another issue that must be analyzed is the
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Commercial Cells Galvanic Cell A Galvanic cell is also known as a Voltaic cell. It was named after Luigi Galvani and Alessandro Volta. A galvanic cell is capable of producing an electric current from a redox reaction that occurs within it and consists of two half cells. Each half cell consists of an electrode and electrolyte and a salt bridge. In a galvanic cell one metal can undergo reduction and the other oxidation. A typical galvanic cell is based on the spontaneous redox reaction: Net Ionic
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2. Draw and completely label a cell membrane. [pic] 4. List and briefly discuss the 5 components of cellular membranes. 1. Phospholipids layer- 2 layers ‚ polar and non polar ‚ polar facing the extracellular fluid and cytoplasm 2. Transmembrane proteins-integral membrane proteins are proteins that expand the membrane 3. Interior protein network-peripheral proteins are in the interior side of the membrane 4. Cell surface markers are glycolipids‚ carbohydrates/lipid
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