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Cellular respiration produces: ______ + ______ +
Cellular respiration produces: ______ + ______ +

... _________________ include sugars and starches and is an important source of energy for cells _________________ include fats and oils. They Store energy for cells to use later and they make up cell membranes _________________ carry out most of cell functions, make up all genetic traits, and are neede ...
CH - TeacherWeb
CH - TeacherWeb

... Phagocytosis - when the cell takes in particulate matter or some fragment of organic matter to large to bring in through the cell membrane. Pinocytosis – when the cell takes in liquid matter. Receptor-mediated endocytosis – specific molecules are often transported into eukaryotic cells. These cells ...
ExamView - HBIO-CW-CellBiology2014.tst
ExamView - HBIO-CW-CellBiology2014.tst

... 20. All of the following are found in both plant and animal cells, except a. a cell wall. b. a plasma membrane. c. mitochondria. d. the endoplasmic reticulum. 21. How are chloroplasts like mitochondria? a. They can both use energy from sunlight. b. They look alike. c. They both contain DNA. d. They ...
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...  Lysozyme digests disaccharide in peptidoglycan.  Penicillin inhibits peptide bridges in peptidoglycan.  Protoplast has completely lost its cell wall.  Spheroplast is a cell that has almost completely lost its cell wall.  L forms are wall-less cells that swell into irregular shapes.  Protoplas ...
chapter 2-6: Active Transport and Endocytosis
chapter 2-6: Active Transport and Endocytosis

... third view, the membrane has pinched off from the surface membrane and is now a vesicle (K). The structure of the vesicle is identical to that of the plasma membrane, and as you can see, it contains the particles. The materials in this vesicle will soon be broken down by enzymes that are derived fro ...
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... – Cytoskeleton is inside the cell and supports the organelles in the cytoplasm. It can be take apart in on place and put back together in another, when this happens the cell changes shape.  It is made up of microtubules and microfilaments. – Microtubules are tiny cylinders of protein. – Microfilame ...
LIFE SCIENCE UNIT 1 TEST REVIEW, CHAPTERS 1 AND 2
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... Prokaryotes are cells that do not have a nucleus to surround their genetic information and do not have membrane-bound organelles. Many prokaryotic cells have a cell wall. Although prokaryotic cells are simpler in structure than eukaryotic cells they have shown an ability to adapt very quickly to cha ...
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... 4. The ______ contains the DNA and controls the cell. 5. Diffusion is the movement of molecules from a ______ to a _______ concentration. 6. If a cell has 95% water and it is placed in a hypertonic solution, water will move out of/into the cell. (circle the correct answer) 7. _________ are where pho ...
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... Plant cells are characterized by a thick _____________ and small bodies within the cytoplasm called _________________, which give the green colour to the plants. These tiny structures are the primary food factory for all living things on Earth. ______________________ within the chloroplast is also r ...
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... Cells and Their Organelles: All coloring will take place in figures 1 and 2 The cell is the basic unit of life - life beings with cells. The following is a glossary of animal cell terms. All cells are surrounded by a cell membrane. The cell membrane is semi-permeable; this means the membrane allows ...
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... reticulum has lots of ribosomes attached to it, so a lot of proteins are made in and travel through the rough ER. The smooth ER is not covered with ribosomes. This is where a lot of lipids are made. The Golgi Body packages molecules for transport (movement) outside the eukaryotic cell. Once it has b ...
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Cell Structure and Function Study Guide

... Plant cells generally contain a nucleus, a cell wall, a cell membrane, chloroplasts, a large vacuole, and cytoplasm. However, under a magnification of 100X, it is not possible to differentiate between the cell wall and the cell membrane. In addition, not all plant cells contain chloroplasts. Animal ...
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Endomembrane system

The endomembrane system is composed of the different membranes that are suspended in the cytoplasm within a eukaryotic cell. These membranes divide the cell into functional and structural compartments, or organelles. In eukaryotes the organelles of the endomembrane system include: the nuclear membrane, the endoplasmic reticulum, the Golgi apparatus, lysosomes, vesicles, endosomes and the cell membrane. The system is defined more accurately as the set of membranes that form a single functional and developmental unit, either being connected directly, or exchanging material through vesicle transport. Importantly, the endomembrane system does not include the membranes of mitochondria or chloroplasts.The nuclear membrane contains two lipid bilayers that encompass the contents of the nucleus. The endoplasmic reticulum (ER) is a synthesis and transport organelle that branches into the cytoplasm in plant and animal cells. The Golgi apparatus is a series of multiple compartments where molecules are packaged for delivery to other cell components or for secretion from the cell. Vacuoles, which are found in both plant and animal cells (though much bigger in plant cells), are responsible for maintaining the shape and structure of the cell as well as storing waste products. A vesicle is a relatively small, membrane-enclosed sac that stores or transports substances. The cell membrane, is a protective barrier that regulates what enters and leaves the cell. There is also an organelle known as the Spitzenkörper that is only found in fungi, and is connected with hyphal tip growth.In prokaryotes endomembranes are rare, although in many photosynthetic bacteria the plasma membrane is highly folded and most of the cell cytoplasm is filled with layers of light-gathering membrane. These light-gathering membranes may even form enclosed structures called chlorosomes in green sulfur bacteria.The organelles of the endomembrane system are related through direct contact or by the transfer of membrane segments as vesicles. Despite these relationships, the various membranes are not identical in structure and function. The thickness, molecular composition, and metabolic behavior of a membrane are not fixed, they may be modified several times during the membrane's life. One unifying characteristic the membranes share is a lipid bilayer, with proteins attached to either side or traversing them.
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