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Photosynthesis

Energy in a Cell

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Chapter 9?Energy in a Cell Section 1?The Need for Energy Chemical bonds store energy that can be released when the bond is broken. Some bonds have more energy than others. Cell Energy Plants and other producers are able to trap light energy from the sun. Consumers obtain their energy from producers and other consumers. Cells need energy for active transport, cell division, movement and protein production, transport and storage. Your muscles and organs need energy to work. Energy is stored, at the cellular level, in the bonds of a molecule in your cells that any organelle can use. Adenosine triphosphate (ATP): composed of an adenosine molecule with three phosphate groups attached

Biology essay

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Name_______________________ Biology Content Knowledge Exam Part 2: Free Response SCED 6416 Directions: In essay form, write your response to all parts of each question. Three questions, total time allowed is 75 minutes. Membranes are important structural features of cells.?(a) Describe how membrane structure is related to the transport of materials across a membrane.?(b) Describe the role of membranes in the synthesis of ATP in either respiration or photosynthesis. 2) An organism is heterozygous at two genetic loci on different chromosomes. | | | | | | --|B --|b | | | | --|A --|a

Campbell Biology 9th Edition Chapter 10-13 Study Guide

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Chapter 10 Photosynthesis The production of organic fuel from energy Carbon dioxide + water + energy organic compounds + oxygen Is a redox reaction Water is split and electrons transferred with H+ from H2O to CO2, reducing it to sugar Autotrophs: ?producers? able to produce their own organic compounds Produce their own organic molecules from CO2 and other inorganic raw materials obtained from the environment Heterotrophs: ?consumers? who must obtain organic compounds from other organisms or substances Where does photosynthesis occur? Chloroplasts in the leaves of plants Chloroplasts are found mainly in mesophyll cells forming the tissues in the interior of the leaf O2 exits and CO2 enters the leaf through microscopic pores called stomata in the leaf

Campbell Biology 9th Edition Chapter 10-13 Study Guide

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Chapter 10 Photosynthesis The production of organic fuel from energy Carbon dioxide + water + energy organic compounds + oxygen Is a redox reaction Water is split and electrons transferred with H+ from H2O to CO2, reducing it to sugar Autotrophs: ?producers? able to produce their own organic compounds Produce their own organic molecules from CO2 and other inorganic raw materials obtained from the environment Heterotrophs: ?consumers? who must obtain organic compounds from other organisms or substances Where does photosynthesis occur? Chloroplasts in the leaves of plants Chloroplasts are found mainly in mesophyll cells forming the tissues in the interior of the leaf O2 exits and CO2 enters the leaf through microscopic pores called stomata in the leaf

Bio_SG_Final_Exam

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Biol 160 Study Guide ? Final Exam 1. Be able to describe what science and a scientific concept are. 2. Be able to define what is and isn?t biology. 3. Know the levels of organization of life that define the scope of biology. 4. What is an atom made of? What charge does each part have? 5. What determines the atomic number of an atom? 6. What is the difference between an ionic and a covalent bond? 7. What is the difference between polar and nonpolar molecules? 8. What is hydrogen bonding and why is it important? 9. What is the general form of a chemical reaction and what are the reactants vs products? 10. How are monomers and polymers related? Be able to describe and recognize a dehydration and hydrolysis reaction.

Bio_160_Lecture5

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Metabolism and Photosynthesis Chapters 6 & 7 Autotrophs Chloroplasts ? Contain chlorophyll ? Green ? Site of photosynthesis ? Concentrated in leaves Chloroplast Structure Overview of Photosynthesis ? Light Reaction (stage 1) ? Occurs in thylakoid membranes of granna ? Converts light energy to chemical energy ? O2 produced as waste product ? Calvin Cycle (stage 2) ?Melvin Calvin ? Occurs in stroma of chloroplasts ? Synthesizes sugar molecules with CO2 & energy produced in light reactions ? The light reactions ? Convert light energy to chemical energy and produce O2 ? The Calvin cycle assembles sugar molecules from CO2 ? Using ATP and NADPH from the light reactions Figure 7.5 Light CO2H2O Chloroplast LIGHT REACTIONS (in thylakoids) CALVIN CYCLE

AP bio summer hw ch 3 questions

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AP Biology Summer Assignment Unit 3: The Cell Ch. 6- Describe the similarities and differences between prokaryotic and eukaryotic cells. Then, select 3 eukaryotic cell organelles that you think you will enjoy studying. For each one, draw and explain the function of this organelle and tell what you find most interesting about it.

Cell Lab

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NAME: ________________________ Hour: ______ CELLS & CELL ORGANELLES LAB Purpose: In this lab, you will learn to identify different cell types and certain organelles. Objectives: Students should be able to: Recognize the major visible organelles of the cell. Give the function of the major organelles. Draw animal and plant cells. Tell the difference between animal and plant cells. Demonstrate good lab technique and explain the techniques used. NOTE: When drawing cells seen though the microscope, draw only a few, large cells accurately. All drawings must be labeled. PART A: Onion Skin. Using the procedure used in the microscope lab to prepare a microscope slide of an onion skin. (Thin skin layer only!)

Photosynthesis Powerpoint

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Photosynthesis Energy Transformations ATP is the energy molecule used in all living things, so supplies must be constantly replenished. energy must be added to make ATP, thus ATP formation is an endergonic reaction. ADP + P + energy ---? ATP the addition of a phosphate molecule to ATP is called phosphorylation ATP ---? ADP + P + energy the removal of a phosphate molecule from ATP gives off energy and is called dephosphorylation Electron Transport System (ETS) is the means by which energy production occurs within cells. It is a series of progressively stronger electron acceptors. Each time an electron is transported, energy is either released or absorbed. This is how most of the ATP in plants and animals is formed Redox Reactions

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