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CST REVIEW: CELLS

CST REVIEW: CELLS. 1c. Students know how prokaryotic cells, eukaryotic cells (including those from plants and animals), and viruses differ in complexity and general structure. Picture. Plants. Prokaryotic cells. Eukaryotic Cells. Picture. Example. Example. Viruses. Picture. Example.

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CST REVIEW: CELLS

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  1. CST REVIEW: CELLS

  2. 1c. Students know how prokaryotic cells, eukaryotic cells (including those from plants and animals), and viruses differ in complexity and general structure. Picture Plants Prokaryotic cells Eukaryotic Cells Picture Example Example Viruses Picture Example Pg. 72/544 in book Top of pg 56 in INB

  3. 1e. Students know the role of the endoplasmic reticulum and golgi apparatus in the secretion of proteins 1f. Students know that usable energy is captured from sunlight by chloroplasts and is stored through the synthesis of sugar from carbon dioxide 1g. Students know the role of the mitochondria in making stored chemical-bond energy available to cells by completing the breakdown of glucose to carbon dioxide Eukaryotic Cells Tree Map EndoplasmicGolgi ApparatusChloroplastsMitochondria Reticulum Rough E.R. Smooth E.R. • Focus on function/job/what they make/ etc… Picture Picture Picture Picture Pg. 73-79 in book Bottom of 56 in INB

  4. 1f. Students know that usable energy is captured from sunlight by chloroplasts and is stored through the synthesis of sugar from carbon dioxide • Please create a picture bubble map of the process of Photosynthesis. Please include a label and description for each: • Chloroplast • Thylakoid • Sunlight • H2O • Oxygen • CO2 • Glucose • Calvin Cycle • Chemical equation for photosynthesis Pg. 103-105 in book Pg. 57 in INB

  5. 1g. Students know the role of the mitochondria in making stored chemical-bond energy available to cells by completing the breakdown of glucose to carbon dioxide • Please create a picture bubble map of the process of Cellular Respiration. Please include a label and description for each: • Mitochondria • Matrix • Glycolysis • Glucose • Krebs Cycle • CO2 • O2 • H20 • ATP • Heat • Chemical equation for Cellular Respiration Pg. 113-115 in book Pg. 58 in INB

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