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Diffusion would be inefficient in a large cell because it will take more time compare to a small cell.

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What structural feature of the membrane makes simple diffusion more efficient?

Having a higher surface area-to-volume ratio, such as with microvilli or folded membranes, can make simple diffusion more efficient because it provides more space for molecules to pass through the membrane and increases the rate of diffusion.


When does diffusion work best?

Diffusion works best in conditions where there is a steep concentration gradient, as this drives molecules from areas of higher concentration to lower concentration more rapidly. It is also more efficient in gases and liquids than in solids, due to the greater movement and spacing between particles in fluids. Additionally, higher temperatures can enhance diffusion rates by increasing molecular motion.


What is diffusion and what increases the rate of diffusion?

diffusion is the transefer of said product from high to low concentration on the outside of the organism. e.g when in water skin wrinkles as their is water outside and water diffuses from your skin to the water outside as it has a higher concentration of molecules. You can increase diffusion by increasing the concentration of the other product on the outside. hope this helped.


What is an Experiment for diffusion in a living organism?

An experiment to study diffusion in a living organism could involve using a simple setup with plant leaves, such as a piece of cabbage or spinach. By placing the leaves in a solution of food coloring or dye, researchers can observe how the color spreads through the leaf tissue over time, demonstrating the process of diffusion as the dye molecules move from an area of higher concentration to lower concentration. Measurements of the diffusion rate can be taken by monitoring the time it takes for the dye to reach certain points within the leaf. This experiment illustrates how diffusion is essential for nutrient and gas exchange in living organisms.


What factors affect simple diffusion?

Factors that affect simple diffusion include concentration gradient (higher concentration difference leads to faster diffusion), temperature (higher temperatures increase diffusion rate), surface area available for diffusion (larger surface area allows for faster diffusion), and characteristics of the molecules themselves (size and solubility).

Related Questions

What structural feature of the membrane makes simple diffusion more efficient?

Having a higher surface area-to-volume ratio, such as with microvilli or folded membranes, can make simple diffusion more efficient because it provides more space for molecules to pass through the membrane and increases the rate of diffusion.


How do temperature effect the rate of diffusion?

higher temp = higher rate of diffusion


Why a high ratio of surface area to volume benefits a cell?

A high surface area to volume ratio allows the diffusion of water, nutrients, and wastes be more efficient. A higher surface area permits more substances through the cell membrane, and makes the diffusion process more effective and efficient. Hope this helped :)


What is diffusion and what increases the rate of diffusion?

diffusion is the transefer of said product from high to low concentration on the outside of the organism. e.g when in water skin wrinkles as their is water outside and water diffuses from your skin to the water outside as it has a higher concentration of molecules. You can increase diffusion by increasing the concentration of the other product on the outside. hope this helped.


What is is diffusion?

Diffusion is the process by which particles move from an area of higher concentration to an area of lower concentration, resulting in the equal distribution of the particles. This process occurs naturally and does not require energy input from the cell or organism.


What is an Experiment for diffusion in a living organism?

An experiment to study diffusion in a living organism could involve using a simple setup with plant leaves, such as a piece of cabbage or spinach. By placing the leaves in a solution of food coloring or dye, researchers can observe how the color spreads through the leaf tissue over time, demonstrating the process of diffusion as the dye molecules move from an area of higher concentration to lower concentration. Measurements of the diffusion rate can be taken by monitoring the time it takes for the dye to reach certain points within the leaf. This experiment illustrates how diffusion is essential for nutrient and gas exchange in living organisms.


What factors affect simple diffusion?

Factors that affect simple diffusion include concentration gradient (higher concentration difference leads to faster diffusion), temperature (higher temperatures increase diffusion rate), surface area available for diffusion (larger surface area allows for faster diffusion), and characteristics of the molecules themselves (size and solubility).


Why is diffuse an example of passive transport?

Diffusion is an example of passive transport because an organism need not expend energy to accomplish diffusion. In diffusion, molecules simply cross a membrane from an area of higher concentration to an area of lower concentration.


How might temperature or variations in temperature in the human body influence diffusion of materials in cells?

Temperature can influence the diffusion of materials in cells by affecting the kinetic energy of molecules. Higher temperatures increase the speed and energy of molecules, leading to faster diffusion rates. Conversely, lower temperatures decrease diffusion rates as molecules have less energy to move across cell membranes. Optimal temperatures promote efficient diffusion within cells.


How does rate of diffusion of a gas in a liquid change on heating?

if the temp is higher then diffusion take place faster


Where and when does diffusion occur?

Diffusion occurs when there is a concentration gradient i.e. a substance moves from higher to lower concentration.


Is a plant that contains chlorophyll a diffusion?

No. Diffusion is the process in which particles move from where they are in higher concentration to where they are in lower concentration.