How Do Different Factors Affect Osmosis Aim: To discover The Different factors that affect osmosis. Factors that affects the rate of osmosis in a potato: * Time * Temperature * Molar * Sucrose solution * NaCl solution * Concentration of liquid * Age of the potato * Variety of the potato * Potassium‚ K(AQ) Factor Chosen: Different Molar of Sucrose Solution In this investigation I will change the molar of sucrose solution to find the increase or decrease
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Barium Chloride Potassium Thiocyanate Sodium Sulfate - Stayed white in color - Turned cloudy in color - Precipitation formed in solution - Stayed white in color Potassium Chloride - Turned cloudy in color - Precipitation formed in solution - Stayed white in color - Stayed white in color Iron (III) Nitrate - Stayed orange in color - Stayed orange in color - Changed color from orange to black Chemical Changes of Test Solutions Test Solution Silver Nitrate Barium Chloride Potassium
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Abstract This experiment introduces magnetism‚ evaporation and filtration as ways to separate mixtures. Temperature when soluble Sand N/A Iron N/A Sodium Chloride 400F Benzoic Acid 100F Experiment and Observation After gathering all the material needed to conduct these experiments‚ the first experiment was initiated. The mixture of solids was weighed out as well as the 10cm square piece of paper and the weighing dish. The mixture was spread out in a very thin layer on a piece
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Introduction Butter is a dairy product made by churning of cream‚ mostly from fresh cow’s milk‚ with the additional of salt (Bylund‚ 1995). Salt (Sodium Chloride) is used as flavoring and preservative as it inhibit the microbial growth. Salt content in butter is limited by legislation in some countries. For example‚ in Thailand‚ the maximum sodium chloride content in butter shall not exceed 4 percent of total butter weight (Thai Ministry of Public Health‚ 2001). Therefore‚ analytical methods are required
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Purpose: The purpose of the experiment is to calculate the enthalpy change occurring in the first of reaction of sodium hydroxide with hydrochloric acid and sodium hydroxide with ammonium chloride. Using Hess’ Law and the results for the enthalpy change of the first two reactions should give the enthalpy change of the third reaction of ammonia with hydrochloric acid. Procedure: Part 1: Construct a calorimeter of two nested stereophony cups where the cover has a hole to fir a thermometer. Measure
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are too small to see‚ but you can taste them. While table sugar is made up of sucrose molecules (remember covalent compounds from chemistry?)‚ table salt (sodium chloride) is a very different kind of chemical compound‚ an ionic compound. It is made up of two smaller particles‚ a sodium ion and a chlorine ion. Sodium chloride can be made in the laboratory (don’t try this at home!) by
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sodium acetate 1.0 M sodium acid 1.0 M sulfuric acid 1.0 M sodium hydroxide Ice 0.1 M lead nitrate 0.1 M barium chloride 1.0 M cadmium chloride 1.0 M ammonium chloride potassium chloride 0.1 M potassium chloride 0.1 M copper (II) sulfate 0.1 M trisodium phosphate 0.1 M sodium sulfide 0.1 M sodium nitrate
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solute in the solution? 4. A student wants to make a 5.00 % solution of rubidium chloride using 0.377 g of the substance. What mass of water will be needed to make the solution? 5. What mass of lithium nitrate would have to be dissolved in 30.0 g of water in order to make an 18.0 % solution? 6. What mass of cobalt(II) chloride would be needed tin order to make 650.0 mL of a 4.0% cobalt (II) chloride solution? 7. A saline solution is 0.9% NaCl. What mass of NaCl and water would
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chemical reactions. (i) Hydrogen + Chlorine → Hydrogen chloride (ii) Barium chloride + Aluminium sulphate → Barium sulphate + Aluminium chloride (iii) Sodium + Water → Sodium hydroxide + Hydrogen Answer (i) (ii) (iii) Question 3: Write a balanced chemical equation with state symbols for the following reactions. (i) Solutions of barium chloride and sodium sulphate in water react to give insoluble barium sulphate and the solution of sodium chloride. (ii) Sodium hydroxide solution (in water) reacts with
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on the hot plate in the fume hood. 4. Precipitate the Silver • Find the necessary amount of sodium chloride to precipitate your silver and take the beaker out of the fume hood after cooling. Then‚ put a mixture of sodium chloride dissolved in distilled water and the dissolved alloy back into the fume hood to heat for 15 minutes on the hot plate. 5. Filter the Silver Chloride • Take the mixture from the fume hood and pour onto the filter paper in the funnel and drain the liquid
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