2016Journal of Introductory Biology InvestigationsRequires access

Effects of Increasing Sucrose Concentrations on CO2 Output in Yeast

Lauren Crow, Ryan Brownen, Stacy Chan, Camisha Brown, Lindsey Worcester

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Abstract

We studied the effects of pH on CO2 output as a factor of growth rate. Acme Brewing and Baking, Organisms create ATP through cellular respiration, fermentation, or photosynthesis by converting sugar into ATP. In this experiment, we tested the CO 2 output with increasing  sucrose concentrations of the solutions using a CO 2 probe because CO 2 is a product of fermentation so the more CO 2 output the greater the yeast growth. We hypothesized that CO 2 output would increase with increasing sucrose concentrations in yeast because sucrose provides yeast with more energy to grow. In the experiment, there were four groups with increasing sucrose concentrations and we measured the CO 2 output over three trials. The results of the study showed that for the most part, increasing the sucrose concentrations in a yeast solution causes the CO 2 output levels to increase meaning an increased growth of yeast. The data in the experiment supported our hypothesis, because the more sucrose added to the solution, the higher the rate of yeast growth. Based on the conclusions of this study, Acme Brewing and Baking could benefit from increasing sucrose concentrations in their yeast in order to promote higher growth rates.

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What this paper is about

We studied the effects of pH on CO2 output as a factor of growth rate. Acme Brewing and Baking, Organisms create ATP through cellular respiration, fermentation, or photosynthesis by converting sugar into ATP. In this experiment, we tested the CO 2 output with increasing  sucrose concentrations of the solutions using a CO 2 probe because CO 2 is a product of fermentation so the more CO 2 output the greater the yeast growth. We hypothesized that CO 2 output would increase with increasing sucrose concentrations in yeast because sucrose provides yeast with more energy to grow. In the experiment, there were four groups with increasing sucrose concentrations and we measured the CO 2 output over three trials. The results of the study showed that for the most part, increasing the sucrose concentrations in a yeast solution causes the CO 2 output levels to increase meaning an increased growth of yeast. The data in the experiment supported our hypothesis, because the more sucrose added to the solution, the higher the rate of yeast growth. Based on the conclusions of this study, Acme Brewing and Baking could benefit from increasing sucrose concentrations in their yeast in order to promote higher growth rates.

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Available abstract

We studied the effects of pH on CO2 output as a factor of growth rate. Acme Brewing and Baking, Organisms create ATP through cellular respiration, fermentation, or photosynthesis by converting sugar into ATP. In this experiment, we tested the CO 2 output with increasing  sucrose concentrations of the solutions using a CO 2 probe because CO 2 is a product of fermentation so the more CO 2 output the greater the yeast growth. We hypothesized that CO 2 output would increase with increasing sucrose concentrations in yeast because sucrose provides yeast with more energy to grow. In the experiment, there were four groups with increasing sucrose concentrations and we measured the CO 2 output over three trials. The results of the study showed that for the most part, increasing the sucrose concentrations in a yeast solution causes the CO 2 output levels to increase meaning an increased growth of yeast. The data in the experiment supported our hypothesis, because the more sucrose added to the solution, the higher the rate of yeast growth. Based on the conclusions of this study, Acme Brewing and Baking could benefit from increasing sucrose concentrations in their yeast in order to promote higher growth rates.

Key concepts: Brewing, Yeast, Sucrose, Fermentation, Food science, Sugar, Respiration, Chemistry

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