If a cell containing many dissolved solutes is placed in pure water, water would move into the cell through osmosis. This occurs because the concentration of solutes inside the cell is higher than in the surrounding water, causing water to flow in to balance the solute concentrations. As a result, the cell may swell and potentially burst if the influx of water is excessive. This process highlights the importance of osmotic balance in maintaining cell integrity.
In a hypotonic environment, an onion cell will fill up with water. Hypotonic refers to a solution that has lower osmotic pressure than the solution you're comparing it to.
The plant cell would lose water through osmosis and shrink in size due to the higher concentration of solutes in the hypertonic solution compared to the cell. This process is called plasmolysis, and it can lead to wilting of the plant cell.
Cooling the hot solution containing dissolved benzoic acid in an ice bath will cause the benzoic acid to crystallize out of solution due to the decrease in temperature. This rapid cooling process helps to promote the formation of pure benzoic acid crystals and allows for easier separation from the solution.
When a thermometer bulb containing mercury is placed in hot water, the mercury inside expands, causing the level of mercury to rise. This expansion of mercury is used to measure the increase in temperature accurately.
A cell placed in an isotonic solution will remain the same size. This is because the concentration of solutes inside the cell is equal to the concentration of solutes outside the cell, creating a balanced environment where there is no net movement of water into or out of the cell.
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Water would enter the cell via osmosis and it would finally burst.
The cell would undergo osmosis, which is the movement of water from an area of high concentration (pure water outside the cell) to an area of low concentration (inside the cell with dissolved solutes). This would cause the cell to swell and potentially burst if the water influx is too rapid.
The cell will lose water and shrivel.
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Water would enter the cell via osmosis and it would finally burst.
If a cell is placed in an isotonic solution, there will be no net movement of water across the cell membrane. The concentration of solutes inside and outside the cell will be equal, so the cell will maintain its normal shape and size as there is no osmotic pressure acting on it.
In a hypotonic environment, an onion cell will fill up with water. Hypotonic refers to a solution that has lower osmotic pressure than the solution you're comparing it to.
The plant cell would lose water through osmosis and shrink in size due to the higher concentration of solutes in the hypertonic solution compared to the cell. This process is called plasmolysis, and it can lead to wilting of the plant cell.
Cooling the hot solution containing dissolved benzoic acid in an ice bath will cause the benzoic acid to crystallize out of solution due to the decrease in temperature. This rapid cooling process helps to promote the formation of pure benzoic acid crystals and allows for easier separation from the solution.
Due to osmosis, when the cell is in a very dilute external environment, the water in its surroundings will diffuse into the cell to reach equilibrium balancing the solutes in the cell with the dilute environment that the cell is in.