The operation of the sodium-potassium "pump" moves (sodium or potassium) Blank 1. Fill in the blank. into the cell and (sodium or potassium) Blank 2. Fill in the blank. out of the cell and represents (active or passive) Blank 3. Fill in the blank. transport of ions.
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The operation of the sodium-potassium "pump" moves (sodium or potassium) Blank 1. Fill in the blank. into the cell and (sodium or potassium) Blank 2. Fill in the blank. out of the cell and represents (active or passive) Blank 3. Fill in the blank. transport of ions.
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- What is the role of lysozyme and a low ionic strength extraction buffer? Select all that apply. Cells absorb water from a low ionic strength extraction buffer, by osmosis, swell and lyse, releasing their contents Lysozyme breaks down bonds in the cellulose cell wall of plants, weakening the structure Cells release water into a low ionic strength extraction buffer by osmosis, shrink and lyse, releasing their contents Lysozyme is an enzyme found in lysosomes in cells Lysozyme breaks down bonds in the peptidoglycan cell wall of bacteria, weakening the structure Lysozyme is an antibiotic found in tears, saliva, human milk and mucus.PART D: CALCULATING THE ACTUAL SIZE OF A CELL. Once you know your microscope's diameter of the field of view, you can now calculate the actual size of your specimen. The ACTUAL SIZE of the specimen is the real size of the cell you are looking at. When you look at the cells through the microscope. the cells look very tiny. It is possible to determine the actual size of the cells you are looking at under LP.MP and HP. We will determine the actual size of a cell u I under HP. Step 1- Look at the cells under HP MAG. Step 2- Pick one cell you want to know the size of. Step 3- Imagine that this cell is placed along the left side of the field of view. (see example) Step 4-Estimate how many cels could fit across the field of view. Step 5- Record your answer Step 6- Use the formula below to calculate the actual size of your cell NOTE: Cells are very tiny therefore; the size of a cell is calculated in micrometers (um) and not mm. Cell size in (mm) ACTUAL SIZE OF CELL= HIGH POWERFOV.diameter of…PART D: CALCULATING THE ACTUAL SIZE OF A CELL. Once you know your microscope's diameter of the field of view, you can now calculate the actual size of your specimen. t you The ACTUAL SIZE of the specimen is the real size of the cell you are looking at. When you look at the cells through the microscope, the cells look very tiny. It is possible to determine the actual size of the cells you are looking at under LP.MP and HP. We will determine the actual size of a cell under HP. Step 1- Look at the cells under HP MAG. Step 2- Pick one cell you want to know the size of. Step 3- Imagine that this cell is placed along the left side of the field of view. (see example) Step 4-Estimate how many cels could fit across the field of view. 5- Record your answer Step 6- Use the formula below to calculate the actual size of your cell NOTE: Cells are very tiny therefore; the size of a cell is calculated in micrometers (um) and not mm. Cell size in (mm) ACTUAL SIZE OF CELL= HIGH POWERFOV.diameter of…
- CELL ENVIRONMENTS Fill in the following statement: Diffusion is the movement of molecules from_high_concentration to_low. concentration. is the diffusion of water. BEAKER #I The solution inside the beaker is: % water % salt The solution inside the cell is: 90 10 % water % salt 20% salt How will the water move? Into the cell or out of the cell? 10% salt How will the movement of water affect the cell? The cell O Water molecules This is a(n) solution.The electrochemical gradient across the plasma membraneGroup of answer choices is caused by more sodium on the inside of the cell relative to the outside of the cell Contains stored potential energy that can be harvested by the cell is caused solely by the sodium/potassium ATPase is a form of kinetic energy that can be harvested by the cell All of the aboveAn animal cell has an internal concentration of 0.1M of NaCl. You place this cell into a solution with 5M NaCl. Select the true statement below. The solution is hypotonic to the cell therefore the cell will lyse The solution is hypotonic to the cell therefore the cell will shrivel The solution is hypertonic to the cell therefore water will lyse The solution is hypertonic to the cell therefore water will shrivel
- Title: Osmosis on Zucchini and Cucumber Objective: Explain how osmosis happens in plants such as zucchini and cucumber. PLEASE WATCH THE VIDEO LINK HERE BEFORE ANSWERING THE QUESTIONS. Thank you Youtube link: https://youtu.be/9bPto2f_fGA After watching it, please ANSWER THE QUESTIONS! The Questions: -Explain why and how did this happen to each of the slices of cucumber or zucchini. (In each Set) -Kindly explain exactly WHY did this happen. (In each Set) -What type of solution were present in each set up here? (In each Set) -How did osmosis happen on each of the set ups? (In each Set) You might be wondering what does it mean with the "(In each Set)". So the format on how you will answer the questions above is in Three sets: Set 1, Set 2 and Set 3 (you can see it in the video, MANDATORY TO WATCH IT). FORMAT: SET 1: Answer the questions. SET 2: Answer the questions SET 3: Answer the questions Thank you so much:)Cytoplasmic streaming in plants… Question options: is the unidirectional movement of the cytoplasmic material around the central vacuole of the cell. creates a whip-like motion used for motility in organisms such as Euglena sp. is the beating back and forth of short microtubules dispersed around the cell to create motion (e.g. Paramecium sp.). pushes the cytoplasm to one end of the cell and causes the plasma membrane to extend outward as a pseudopod.Which of the following statements best describes what happens when a pacterial cell is placed in a solution containing 5% NaCl? O The cell will undergo osmotic lysis. O Water will move out of the cell. O No change will result; the solution is isotonic. O Water will move into the cell. O Sucrose will move into the cell from a higher to a lower concentration.
- Sodium-potassium pumps move ___________________ ions _______________ of the cell and _____________________ ions ___________________ the cell. This causes the inside of the cell to have what type of charge? __________________________.Which of the following is correct about a symporter? it is a form of passive transport it moves one substance at a time against its concentration gradient it utilizes ATP it moves large substances using endocytosis/exocytosis none of the above are correctthe major factor limiting cell size is the