3) The overall reaction for photosynthesis is: 6CO₂ + 6H₂O + ATP C6H₁2O6+ 60, (or more accurately 2x C,H,O,) a. On this diagram identify where each of these reactants and products are found. b. Why don't you see the water or oxygen in this diagram? C. We can find the electrons from the water on here, where are they?
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- Potassium nitrate is widely used in industries. The reaction for the industrial production of KNO3 is summarized in the equation below; 4KCl + 4 HNO3 + O2 → 4 KNO3 + 2 Cl2 + 2 H2O Which of the following statements below is correct about the production of KNO3? a. A redox reaction; KCl is a reducing agent and O2 is an oxidizing agent b. A redox reaction; HNO3 is a reducing agent and Cl is an oxidizing agent c. Not a redox reaction d. A redox reaction; KCl is a reducing agent and KNO3 is an oxidizing agent e. A redox reaction; HNO3 is a reducing agent and KNO3 is an oxidizing agentThe complex chemical reactions that occur in living organisms can sometimes be summarized with chemical equations. The overall process of photosynthesis and aerobic respiration can both be summarized in this way. For the following equations, first determine whether each is summarizing photosynthesis or aerobic respiration, and then click on each of the boxes below the equations and correctly label all of the reactants and products. The following equation summarizes the reactants and products of A. aerobic respiration B. PhotosynthesisPropose a full mechanism for the formation of the diene. Show curved arrows to illustrate electron flow, and please show all steps. Include a brief paragraph that describes the steps of the mechanism and discusses the driving force for the steps shown. (attached is the image)
- Which of the following statements are true? Explain. I. ATP synthesis will cease to occur when the electron flow is blocked by cyanide. II. 2,4-DNP allows electron flow to continue in the ETC without the synthesis of ATP. III. -ΔG is the quantity that signifies that the reaction is SPONTANEOUS.Figure 1 shows the catalytic triad of a-chymotrypsin. Identify A, B and C. Describe the subsequent steps of stage 1 and stage 2 of a- chymotrypsin mechanism. Illustrate with diagrams. A B CH2 H-N N: H-O Figure 11 of 1 3. A sample of glucose reacts in anaerobic respiration. The right- hand box below shows a particle diagram of the moles of substances present after the reaction is complete. fe On a piece of paper draw the "Before" box as shown and draw a particle diagram of the reactant molecules that produced the mixture shown on the right. Key = C2H5OH = CO2 = CgH1206 Sub Before After You will need to draw a diagram to answer this question. On a piece of paper, draw the "Before" box as shown, and then draw a particle diagram of the reactant molecules that produced the mixture shown on the right. Upload an image of your drawing by clicking "Upload files" or by dragging and dropping your file into the box. Or, use your device's camera to take a photo of your work by clicking the camera icon.
- 1. Would Hill reaction proceed at a significantly faster rater if: a) Reaction proceeded at a temperature 10 degrees centigrade higher. Why? b) Reaction is conducted at higher light intensitites. Why? 2. Does measuring Hill reaction accurately measure the entire photosynthetic process? Why?Plants convert carbon dioxide and water to glucose 1C6H12O62 and oxygen in the process of photosynthesis. Write a balanced equation for this reaction, and determine how many moles of CO2 are required to produce 15.0 mol of glucose.5. Consider the reaction: | OH H H₂C-(CH₂) C C—C—SCOA HH H₂C-(CH₂) a. What kind of reaction is being performed here? b. What enzyme performs this reaction? OHO C—C—C—SCOA c. What cofactors, if any, are required for this reaction? H
- Image shows reaction for hydrogen ion transport from outside mitochondrion to inside mitochondrion. Part a) What is ∆G ̊ for hydrogen ion transport. Part b) Outside the mitochondria there is a pH of 6.4 and inside mitochondria, there is a pH of 7.4. Calculate Q and ∆G for the reaction shown in the image. Part c) How many hydrogen ions needed per one ATP?Propose a reasonable stepwise mechanism, using curved arrow notation to show the flow of electrons, for the following reaction. Please have it computer done.. I've seen a lot of you guys use websites, I dont know why I keep getting the same like 2 people who want to do it by hand and then I can't even understand the hand writting when they write Carbon or Hydrogen or whatever other chemcial... Please just have it drawn using computer... I'm honestly just begging here... I've sent this question in so many times now. PLEASE I'M BEGGING YOU.... Just have it drawn out on a computer (I dont want it explained, I need a Drawing that shows all curbed arrows and electron flow)Scheme 1: CH3 HNO,/ H,SO, NaOCI CH, HO, CH,OH / H* NO, HNO, / H,SO, NaOC1 OCH HNO,7 H,SO, он но NO2 NO2 CH,OH / H* OCH 3 CH,OH/H* NO2 1. You decide to perform step three of the green pathway first. You start with 1.81 g of the starting material. After the reaction is complete, you weigh 1.18 g of the product, which is a dry solid. What is the percent yield for the third step of the green pathway? Show all of your work!