In what situations / situations does an organism resort to lactic acid fermentation? Explain. What are the benefits of lactic acid fermentation in industrial application? Write
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In what situations / situations does an organism resort to lactic acid fermentation? Explain. What are the benefits of lactic acid fermentation in industrial application? Write.
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- Create a mnemonics for Krebs cycle substrates .A bacterial culture is grown using either octadecane (C18H38) or pentachlorophenol (C6HOCl5)) as the sole source of carbon and energy. The cell yield value is determined by dry weight analysis to be 1.49 for octadecane and 0.05 for pentachlorophenol. Using either octadecane or pentachlorophenol, please describe the steps taken (and the final result) showing what percentage of the substrate carbon will be found as cell mass and as CO2? Please show all calculations and give correct answers.A bacterial culture is grown using either octadecane (C18H38) or pentachlorophenol (C6HOCl5)) as the sole source of carbon and energy. The cell yield value is determined by dry weight analysis to be 1.49 for octadecane and 0.05 for pentachlorophenol. Using either octadecane or pentachlorophenol, please describe the steps taken (and the final result) showing what percentage of the substrate carbon will be found as cell mass and as CO2? Please show all calculations and give correct answers. Please answer the question.
- A bacterial culture is grown using either octadecane (C18H38) or pentachlorophenol (C6HOCl5)) as the sole source of carbon and energy. The cell yield value is determined by dry weight analysis to be 1.49 for octadecane and 0.05 for pentachlorophenol. Using either octadecane or pentachlorophenol, please describe the steps taken (and the final result) showing what percentage of the substrate carbon will be found as cell mass and as CO2? Please show all calculations.A bacterial culture is grown using either octadecane (C18H38) or pentachlorophenol (C6HOCI5)) as the sole source of carbon and energy. The cell yield value is determined by dry weight analysis to be 1.49 for octadecane and 0.05 for pentachlorophenol. Using either octadecane or pentachlorophenol, please describe the steps taken (and the final result) showing what percentage of the substrate carbon will be found as cell mass and as CO2?Associate the biochemical reaction in TSI agar to certain genera or species. Reaction Possible Organism(s) K/K K/A K/A, H2S* A/A A/A A/A, H2S*
- What are catalases? Why are they called antioxidant enzymes? Give the industrial applications of this enzyme.Aerobic degradation of an organic compound by a mixed culture of organisms in waste water can be represented by the following reactionWrite an example of: 1) Catabolic reaction equation (name of substrate, Enzyme and end products) 2) Anabolic reaction equation (name of substrate, Enzyme and end products)
- Xylanase is a class of hydrolyase enzymes that can break down hemicellulose into fermentable sugars. Xylanase is widely used in the pulp and paper industry for chlorine-free enzymatic bleaching of wood pulp. Besides that, xylanase is also applied in several industries like feed, pharmaceuticals, food and beverages. At the industrial scale, xylanases are mainly produced by microorganisms such as bacteria and fungi. 1. Solid-state fermentation and submerged fermentation are the two major techniques applied in the production of xylanase enzymes. Outline how the xylanase enzymes are produced using these two techniques. Identify the advantages and disadvantages of these two techniques. 2. Select a suitable microorganism and substrate that could be applied to produce xylanase enzymes economically at industrial scale via the submerged fermentation techniques with justifications.The following are coenzymes or cofactors involved in enzymatic reactions. Identify the biochemical role that each plays within a biochemical transformation: Cofactor/Coenzyme Biochemical Role Thiamine pyrophosphate Coenzyme A Adenosine triphosphate Heme Lipoamide TetrahydromethanopterinWhat is the optimal temperature for the enzyme shown above?