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Theoretically, the maximum point of increase in the rate of osmosis with the increase of temperature should be the boiling point of water. At this point, the water can not get hotter (without superheating due to the addition of pressure), therefor the rate of osmosis could not be any greater.Yes, increasing temperature would result in an increase in the rate of osmosis, as the water molecules would have more energy and therefore faster Brownian motion. This means the molecules move around a lot faster, so equilibrium would be reached faster.
Osmosis is a passive process and happens without any expenditure of energy. It involves the movement of molecules from a region of higher concentration to lower concentration until the concentrations become equal on either side of the membrane. Any solvent can undergo the process of osmosis including gases and supercritical liquids.
Because osmosis is passive, which means it does not require energy. It allows the transfer of water to where its needed, without cells needing to expend any ATP.
Water or liquid move naturally from lower concentration to higher concentration. The drive force is called osmotic pressure. No additional pressure need to drive osmosis process. Reverse osmosis, is apply pressure to fight against osmotic pressure. It do need additional pressure to reverse the osmosis process. It is comparing a zero additional pressure with any positive additional pressure thus of cause reverse osmosis require more pressure.
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Theoretically, the maximum point of increase in the rate of osmosis with the increase of temperature should be the boiling point of water. At this point, the water can not get hotter (without superheating due to the addition of pressure), therefor the rate of osmosis could not be any greater.Yes, increasing temperature would result in an increase in the rate of osmosis, as the water molecules would have more energy and therefore faster Brownian motion. This means the molecules move around a lot faster, so equilibrium would be reached faster.
There are a many factors which affect the rate of osmosis. One of the factors is the temperature of the solution and solvent. Temperature affects osmosis because when temperature goes higher, molecules move faster. So, osmosis will increase. If the temperature is decreased, the rate of osmosis will decrease too. Another factor which affects osmosis is the size of the particles. The size of the particles affect osmosis because osmosis is the movement of a solvent through a membrane and membrane's pores, or empty spaces, are different sizes. Only certain particles can fit through any given membrane. The concentration gradient can also affect osmosis because osmosis is a transport process therefore it can only go with the concentration gradient. The lower the concentration of the solute within a solvent, the faster that osmosis will occur into that solvent. The light and dark also affects osmosis because the greater the light, the faster osmosis occurs. The PH affects osmosis as well. The greater the pH of a solution, the more acidic or concentrated it becomes. The greater the concentration gradient of a substance on either side of a membrane the faster osmosis occurs.
no, The weather does not have any affect on the temperature, it just seems to make the temperature.
Yes, it does.
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Ultimately, the temperature has little effect of the reaction of water and Alka-Seltzer. However, warmer water will make the reaction occur and finish a bit faster.
no osmosis is when water molecules wove out of a cell of any animal!
The cell does not need to use any ATP in order for osmosis to occur.
pH, temperature, substrate concentration and enzyme concentration influences the rate of reaction
There is definitely a strong relation between osmosis pressure and water activity. Osmosis is the movement of water from high pressure to low pressure.
A lunar eclipse has no measurable effect on the temperature at any place on earth.
Osmosis is a passive process and happens without any expenditure of energy. It involves the movement of molecules from a region of higher concentration to lower concentration until the concentrations become equal on either side of the membrane. Any solvent can undergo the process of osmosis including gases and supercritical liquids.