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second half of questions

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Question
Answer
metabolism   sum of all chemical reaction that occur in an organism  
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metabolic pathways   goes from high energy to low energy in a cell  
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metabolism   all reaction are catalyzed by the use of enzymes  
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Prokaryotic Cell   no defined nucleus  
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Eurkaryotic Cell   membrane enclosed nucleus  
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Prokaryotic Cell   carries out functions of the cell as ordered by the nucleus, no organelles  
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Eurkaryotic Cell   series of organelles that carry out functions of the cell as directed by the nucleus  
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Nucleus   contains chromosomes  
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Nucleus   contains all material for regeneration of the cell  
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Nucleus   contains all of the instructions for the cell  
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Ribrosomes   read the RNA  
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ribrosomes   translates genetic instructions to produce proteins  
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Bound Ribrosomes   found in er(endoplasmic reticulum  
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Free Ribrosomes   found in cytoplasm  
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Endoplasmic Reticulum   attatched to the nuclear membrane  
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Rough ER   responsible for protein synthesis and membrane production  
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Smooth ER   funcitons in detoxification and metabolism  
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Golgi Apparatus   packaging, processing, and shipping organelle  
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Golgi apparatus   transports material farom the Er througout the cell  
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Lysosomes   Intracellular digestion takes place here  
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Lysosomes   Packed with hydrolytic enzymes  
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Lysosomes   Can Hyrolyze proteins, fats, sugars, and nucleic acids  
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Vacoules   membrane enclosed  
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Phagocytosis   uptake food through the cell membrane creating a food Vacoule  
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Central Vacoule   In a plant and functions as storage, waste, disposal, protection, and hydrolysis  
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Mitochondria   located in Eukaryotic cells  
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chloraplasts   Located in plants  
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Mitochondria   site for respiration  
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Chloroplasts   Site for photosynthesis  
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Cellular Membrane   most important componant of the cell  
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ATP   used as currency of the cell  
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Cellular membrane   has bilayer of phosolipids with proteins, cholesterol, and glycoproteins peppered throughout  
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ATP   Adenosine Triphosphate  
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Cellular Membrane   Bilayer creates huydrophobic layer between(region)2 layeres of lipids(selectively preamble)  
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NADH   ACTS AS REDUCING AGENT  
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Cellular Membrane   Contributes to protection, communication, and passage of substances in and out of the cell  
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NADH   Vehicle of stored energy  
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NADH   Precursor to produce greater amounts of ATP in final steps of respiration  
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Cellular Respiration1   1.Glycolysis, 2. Krebs Cycle, 3. Electron transport chain  
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Glycolysis   when conversion of glucose to pyruvate  
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Krebs Cycle   Pyruvate transported into the mitochondrion  
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Glycolysis   takes place in cytosol of cell  
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Krebs Cycle   takes place in the matrix of the mitochondrion  
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Electron Transport Chain   Oxidation of NADH molecules to produce oxygen and finally produce water  
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Electron Transport Chain   for every glucose molecule 28- 32 ATP can be produced  
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Glycolysis   Produces 2 molceules of atp, 2 molecules of pyruvate, and 2 molecules of NADH  
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Krebs Cycle   for 1 consumed glucose molecule, 2 atp molecules, 6 carbondioxide, molecules and 6NADH molecueles are produced  
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Photosynthesis   Light reactions, and Calvin Cycle are the two stages of this  
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Calvin Cycle   sugar produced is polymerized and stored as a polymer of glucose  
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Calvin Cycle   second stage of photosynthesis  
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Light reaction   1st stage of photosynthesis  
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Light Reaction   converts solar energy to chemical energy  
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Light Reaction   Accomplishes production of ATP by absorbing light and using that energy to split a water molecule and transfer the electron creating NADH and producing ATP  
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Asexual Reproduction   involves Bacterial Cells  
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Asexual Reproduction   chromosomes bind to plasma membrane where it replicates  
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Asexual Reproduction   As it grows it pinches into 2, creating 2 identical cells.  
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