PhysioEx™ Lab: Cell Transport Mechanisms and Permeability Activity 1: Simple Diffusion Chart 1 Dialysis Results (Average Diffusion rate in mM/min) Solute Membrane (MWCO) 20 50 100 200 NaCl (—) 0.0150 0.0150 0.0150 Urea (—) (—) 0.0094 0.0094 Albumin (—) (—) (—) (—) Glucose (—) (—) (—) 0.0040 1) Which solute(s) were able to diffuse into the right beaker from the left? NaCl‚ Urea‚ Glucose 2) Which solute(s) did not diffuse? Albumin 3) If the solution in the left beaker
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Experiment #1 Date: September 13‚ 2011 Title: Diffusion in Gases I Aim: To observe the diffusion of bromine Apparatus and Materials: Glass tube‚ bromine‚ fume chamber Diagram: Procedure: -Liquid bromine was placed in a jar and covered Observations: When first placed in the jar the original color of bromine was red-brown. As it began to diffuse its color changed from dark brown to a lighter brown until it becomes a yellow-like orange color. As it was diffusing liquid bromine changes its state
Free Gas Temperature Carbon dioxide
Cultural Diffusion and its Influence on Europe and Sub Saharan Africa Both Europe and Sub Saharan Africa was and still is a melting pot consisted of a blend of races and cultures that has integrated into a cohesive whole. Take The Melting Pot restaurant as an example; The rich blend of the chocolate sauces can resemble a specific culture such as strawberry‚ white‚ dark‚ raspberry‚ etcetera‚ but when they are mixed together‚ the melting pot creates a swirl that symbolizes the blending of one culture
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Osmosis using potato cores and sucrose solution 1.0 Abstract This experiment’s ultimate goal is to find the water potential of the potato cell. This was achieved through placing potato cores in different concentrations of sucrose (0.2%‚ 0.4%‚ 0.6%‚ 0.8%‚ 1.0%‚ 2.0%‚ 3.0% and 4.0%) solution and to observe how much water was gained or lost through osmosis to reach a prediction of the concentration within the potato cell. The results displayed that the concentration of sucrose within the potato cell
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Success: Applying Rogers ’ "Diffusion of Innovations" Theory to Agroforestry MIRZA B. BAIG1‚ GARY S. STRAQUADINE†‚ MICHAEL R. WHITEMAN‡ AND M. AZHAR NAEEM¶ University of Guelph‚ Canada‚ current address: Allama Iqbal Open University‚ Islamabad‚ Pakistan †Utah State University‚ UMC– 1435‚ Logan Utah‚ USA‚ ‡University of Idaho‚ Moscow‚ Idaho–83844‚ USA ¶University of Arid Agriculture‚ Rawalpindi‚ Pakistan 1 Corresponding author’s e-mail: drbaig2@yahoo.ca ABSTRACT "Diffusion of Innovations‚" E.M. Rogers
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Diffusion of innovations From Wikipedia‚ the free encyclopedia Jump to: navigation‚ search The diffusion of innovations according to Rogers. With successive groups of consumers adopting the new technology (shown in blue)‚ its market share (yellow) will eventually reach the saturation level. In mathematics the S curve is known as the logistic function. Diffusion of Innovations is a theory that seeks to explain how‚ why‚ and at what rate new ideas and technology spread through cultures. Everett
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AT1- Osmosis In Potatoes Aim: Investigate the movement of osmosis through a selectively permeable membrane‚ in this case potato. Introduction: Osmosis is the movement of water through a semi permeable membrane‚ separating solutions of different concentrations. The water passes from a region of high concentration to a region of low concentration‚ until the two concentrations are equal in concentrations of water. Many cell membranes behave as semi permeable membranes‚ and osmosis is
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of this‚ molecules tend to spread out evenly into available space in a process called diffusion. Diffusion is the random process of molecules moving from areas of high concentration to low concentration‚ thus requiring no energy. Many of the substances that enter or leave the cell do so through diffusion. Osmosis‚ a type of diffusion‚ is the movement of water across a selectively permeable membrane. In osmosis‚ water diffuses across the area of lower solute concentration to that of higher solute
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Effect of osmosis rate on different surface areas‚ depending on different types of water solution An investigation showing the effect of surface area on osmosis rate‚ including some different types of water concentration. Osmosis is a type of passive (not requiring energy) transport of water molecules across partially permeable membrane‚ from an area of high water concentration into area of low water concentration. But how does surface area affect rate of osmosis? Surface area plays important
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My Investigation on osmosis Osmosis is a special kind of diffusion. While diffusion can describe the movement of any kind of molecule‚ osmosis is only about the movement of water molecules. To show this diffusion I will be using potato discs‚ of the same size and mass‚ in different concentrations of sugar solution to find out whether the mass of the discs increases or decreases depending on the concentration. I predict that when the sugar solution is 0% the mass will increase as there is
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