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No, it's false. Because temperature has nothing to do with diffusion.

Diffusion is like this, imagine that you are pouring a water on a bathtub, if you pour the water on one side of the bathtub, the water will still go to the other side of the bathtub and then the water will be leveled inside the bathtub. Therefore no matter what temperature it won't affect the movement of water.

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Why is diffusion faster in summer than in winter?

The rate of diffusion is increased when the temperature is higher (the movement of particles is increased).


Why is diffusion faster in summers than in winters?

The rate of diffusion is increased when the temperature is higher (the movement of particles is increased).


Why do you think temperature affect rate of diffusion?

Temperature affects the rate of diffusion, by speeding up the movement of molecules. For example it kind of like when going from water to steam. The water molecule get heat added and speed up, like that of diffusion.


How diffusion coefficient depends on temperature?

The diffusion coefficient generally increases with temperature. This is because higher temperatures lead to greater thermal energy, which enhances the movement of particles, resulting in increased diffusion rates. The relationship between diffusion coefficient and temperature can often be described by Arrhenius equation or by simple proportional relationship in many cases.


What drives diffusion?

Diffusion is driven by the random movement of particles or molecules from an area of higher concentration to an area of lower concentration. This movement occurs to reach equilibrium and minimize the concentration gradient. Temperature, pressure, and molecular weight can also affect the rate of diffusion.


What is the graph of diffusion vs temperature?

The graph of diffusion vs temperature typically shows an increase in diffusion rate with increasing temperature. This is because higher temperatures increase the kinetic energy of particles, leading to faster movement and more frequent collisions, which in turn promotes faster diffusion. However, extreme temperatures can also denature proteins or change the properties of the medium, affecting diffusion rates.


How does low temperature affect diffusion?

Low temperatures typically slow down the rate of diffusion by reducing the kinetic energy of particles, which results in decreased movement and collisions between molecules. This can lead to slower diffusion rates as particles have less energy to move through a medium.


How does temperature affect rate of diffusion?

Faster diffusion will take place if the surroundings are warmer. Increase in temperature means an increase in molecules' speed (kinetic energy). So the molecules move faster and there will be more spontaneous spreading of the material which means that diffusion occurs more quickly.


Macromolecular diffusion and biological membrane are samething?

It is two completely different things. Diffusion of macromolecules is random movement of macromolecules given by their energy, temperature. And biological membrane is a lipidic membrane.


What are the differences between diffusion and convection in terms of the movement of particles in a fluid medium?

Diffusion is the movement of particles from an area of high concentration to an area of low concentration, while convection involves the transfer of heat through the movement of the fluid itself. In diffusion, particles move randomly, while in convection, the fluid moves in a specific direction due to temperature differences.


Diffusion is the movement of molecules from?

Diffusion is the movement of molecules from an area of high concentration to an area of low concentration.


How diffusion occurs along with convection in fluid?

Diffusion in fluid occurs when particles move from an area of high concentration to an area of low concentration due to random motion. Convection, on the other hand, involves the bulk movement of fluid resulting from temperature or density differences. In a fluid, both diffusion and convection can occur simultaneously, with diffusion driving molecular movement within the fluid while convection causes bulk movement of the fluid itself.