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Tuesday, May 28, 2019

Rate of Chemical Reaction between Magnesium and Hydrochloric Acid :: Papers

Rate of Chemical Reaction between Magnesium and Hydrochloric Acid Aim - ====== I plan to investigate the progeny of temperature, to see if it increases or decreases the rate of reaction between magnesium and hydrochloric acidic. Prediction - ============= I predict that as the temperature of the hydrochloric acid increases, the quicker the rate of reaction provide be. This is due to the molecules in the hydrochloric acid gaining energy from the heat. Consequently, the molecules have increased kinetic energy, which provide produce more activation energy. The particles will have more palmy collisions resulting in a faster reaction rate. No heat Heat present Lines of reaction IMAGE Mg turnings Beaker IMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGE Hcl IMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGEIMAGE The above diagram show that when there is more heat p resent there are more lines of reaction than if there was less heat. This is due to the number of successful collisions being far greater when the hydrochloric acid is heated. I predict also that if I did a graph showing the volume of gas against time it would look like the following. IMAGE From the above graph you jackpot see that when the Time Increases the volume of gas being produced goes up, then it levels off. It levels off because the volume of hydrogen gas being produced is slowing down because all the magnesium and hydrochloric acid is being used up. Fair test ========= In order to keep my experiment as fair as possible I will have to make for sure I keep the following factors the same - Volume of acid (25cm3) Mass of Magnesium (0.1g) I will make sure the gas syringe is connected correctly and securely to the side arm conical, so no hydrogen gas can escape. I will jump out the syringe at 0 for each run. Also I would make sure to pu t the bung on quickly, to prevent the hydrogen gas escaping.

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