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Animal cells
Animal cells

... 1-Centrioles - organize the assembly of microtubules during cell division. 2-Cytoplasm - gel-like substance within the cell. 3-Endoplasmic Reticulum - extensive network of membranes composed of both regions with ribosomes (rough ER) and regions without ribosomes (smooth ER). 4-Golgi Complex - respon ...
Plasma Membrane and Cell Wall
Plasma Membrane and Cell Wall

... With this arrangement in mind, where is Membrane is made up of two layers of the “water” in the diagram? phospholipids. WATER Hydrophilic: LOVES water Hydrophobic: HATES water ...
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Study Guide Answers

... Cell division producing haploid sex cells Different because two divisions of the nucleus occur – like mitosis x2. Deals with sex cells – egg and sperm ...
A Cell Is Like A Castle
A Cell Is Like A Castle

... wall. • Plants go through chemical processes such as photosynthesis and cell respiration. • They are green in color because of chlorophyll. • They have chloroplasts. • They are square in shape due to the cell wall. • They have one large central vacuole. • They provide structure and support. ...
Cell Structure and Function
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... Draw at least three different types of specialized cells on separate paper and label the cell type (animal or plant) and any recognizable cell structures. Then compare the different cells and describe how their structures are related to their functions. ...
Name School Class Date Laboratory Investigation on Cells Observing Plant Cells
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... microscope slide. The piece of onion should be no bigger than 1cm . Cover this with one drop of iodine solution and place the cover slip over this. Observe the cells using the x10 objective lens. ...
Essential Biology 02.3: Eukaryotes In the table below, compare
Essential Biology 02.3: Eukaryotes In the table below, compare

... In an animal cell there is no cell wall as it does not need to keep a strong shape, there is no chloroplast because that is what gives plants its green color and it also has no vacuole which is which stores food and water and nutrients in a plant cell. However the animal cell also has centrioles whi ...
Cell Structure and Function - Goshen Central School District
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Cell Structure and Function Note Guide

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membranes

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... of the cell membrane. The pocket that results breaks loose from the outer portion of the cell membrane and forms a vacuole within the cytoplasm. Large molecules, clumps of food, and even whole cells can be taken up in this way. Two examples of endocytosis are phagocytosis (fagoh-sy-TOH-sis) and pino ...
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Print Preview - C:\WINDOWS\TEMP\e3temp_5676\.aptcache

... 5. Where does a cell membrane come into contact with water? 6. Why do the phospholipids surrounding the cell form a bilayer? ...
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...  proteins made on these ribosomes thread way into cisterns  proteins then enclosed in vesicles  Golgi ...
Structures of Eukaryotic Cells
Structures of Eukaryotic Cells

... 1.-loosely coiled DNA found within the nucleus 2.-can tightly coil into a bow tie shaped “chromosome” ...
Active Transport
Active Transport

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Comparing Prokaryotic and Eukaryotic Cells
Comparing Prokaryotic and Eukaryotic Cells

... 1. Basic unit of living organisms is the cell; the smallest unit capable of life. Features found in all cells:  Ribosomes are a universal feature to all cells. These are the sites for protein synthesis. Translate from one cell language to the other.  Cell Membrane: separates the chaos outside the ...
Comparing Prokaryotic and Eukaryotic Cells
Comparing Prokaryotic and Eukaryotic Cells

... ! All cells require Energy, and this is universally supplied in the form of ATP. ! All cells are regulated by and respond to External Stimuli. ! All cells Regulate the flow of nutrients and wastes that enter and leave. ! All cells Reproduce and are the result of reproduction. 2. Basic chemical compo ...
Cellular Crossword
Cellular Crossword

... 4. a combination of two or more tissues working together to perform a specific job in the body 5. organelles that make proteins 6. a group of similar cells that perform a common function 8. kind of cells that have a nucleus and membrane-bound organelles 9. sacs that pinch off the Golgi bodies and co ...
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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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