Match with the given reaction A. The reaction that is slowest in reacting with the enzyme B. The reaction that is fastest in reacting with the glucose oxidase C. The reaction that is most fitted in the active site of the enzyme
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Match with the given reaction
A. The reaction that is slowest in reacting with the enzyme
B. The reaction that is fastest in reacting with the glucose oxidase
C. The reaction that is most fitted in the active site of the enzyme
Step by step
Solved in 2 steps
- Two air flows are combined to a single flow. One flow is 1 m3/s at 20oC and the other is 2 m3/s at 200oC, both at 100 kPa. They mix without any heat transfer to produce an exit flow at 100 kPa. Neglect kinetic energies and find the exit temperature and volume flow rate.Consider the following reaction at 25°C with the ΔG°’ = +1800 J/mol for the forward reaction.The molar concentrations at the beginning of the reaction were [A] = 19 mM and [B] = 10 mM.After 1 hour, the concentrations were [A] = 16 mM and [B] = 13 mM. Calculate the ΔG of the reaction at the 1 hour timepoint. Please round to 1 decimal point.Gas constant = 8.315 J/mol KDetermine and report the pressure of collected hydrogen gas in atmospheres. Report this result to one more digit than allowed by applying the rules of significant figures. (1 atm = 760 mm Hg, an exact conversion factor.) Determine the moles of hydrogen collected by substituting the appropriate quantities into the ideal gas equation and solving. Report this result to one more digit than allowed by applying the rules of significant figures. Notes: the gas temperature is the same as the listed temperature; R = 0.082057 L-atm/mol-K. Be mindful of units. Determine the experimental atomic mass of Cu. Round this result to the correct number of significant figures. Determine the percent relative error (= ????????????−?h????????? ? 100). The molar mass of Cu is 63.546 g/mol. Mass of copper before electrolysis 6.008 g Mass of copper after electrolysis 5.860 g Volume of H2 collected 58.9 mL Pressure of H2, PH2 720.8 mm Hg Temperature 24.0 oC
- Combustion of a fuel sample in a bomb calorimeter increases the temperature of the entire system by 5.10 °C if the calorimeter contains 1700 g of water, but only by 4.00 °C if the calorimeter contains 2200 g of water. What is the heat capacity of the dry bomb calorimeter assembly? Assume that the specific heat capacity of water is 4.18 J g–1 °C–1.Starting at rest (on a spaceship), an object falls 1,600 feet towards the Earth (acceleration = 32 feet per second2, in the vacuum of space). Neglecting the possible effects of air friction, if the final velocity of the object is 320 feet per second (vf) when it hits Mount Everest, how long was the fall? 2 seconds 4 seconds 6 seconds 8 seconds 10 secondsWhat is the initial rate of reaction show by the data in the graph below? A. 0.6 mmol per litre / second B. 6 mmol per litre / second C. 10 mmol per litre / second D. 60 mmol per litre / second
- Heliox is a helium‑oxygen mixture that may be used in scuba tanks for divers working at great depths. It is also used medically as a breathing treatment. A 5.25 L tank holds helium gas at a pressure of 1734 psi. A second 5.25 L tank holds oxygen at a pressure of 461.0 psi. The two gases are mixed in a 5.25 L tank. If the temperature remains the same throughout the process, what is the pressure of the gas mixture in the tank? Assume ideal gas behavior.My data is attached, please 1.) Create a scatter chart with all the data then **Using your graph - predict how many seconds it will take to dissolve an Alka-Seltzer® tablet in 200 mL of water at the following temperatures. Use the exponential trend line to find the function used in predicting the time. If needed, please refer to the Introduction to Graphing manual for guidance. 15°C, 35°C and 60°CWould it be more difficult to meet a 70 ppb one hour averaged standard or 70 ppb 8-hr averaged standard and why?
- Po-210 is an alpha emitter with a half-life of 138 days. Howmany grams of Po-210 remain after 552 days if the sampleinitially contained 5.80 g of Po-210?Which if the following statements is TRUE? A plot of V vs P for an ideal gas is a straight line with a negative slope There are no attractive forces between ideal gas molecules. At a given temperature, heavier gas particles travel more quickly than lighter gas particles. Real gases approxamate ideal gases at high pressures and low temperatures. There are strong repulsive forces between ideal gas molecules.Use Beer Lamberts law to calculate the concentration of oxidised DCPIP A= 600 L = 1cm K = 11800 M^-1