ompute the total ATP produced in the catabolism of 1 mole of GLUCOSE. Show your computations.
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- 1. Assuming that everything that’s needed to make tripalmitin comes from glucose, how many glucose would be used by adipose tissue in the synthesis of 1 mol tripalmitin? 2. How many ATP would be used (net of produced and used)? 3. If an animal absorbs 35 g glucose (MW = 180 g/mol) from drinking a can of pop, how many grams of tripalmitin (MW = 807 g/mol) can be produced from it in adipose tissue? Please provide only typed answer solution no handwritten solution needed allowedB) The actual concentrations of ATP, ADP and Pi differ by tissue/cell type (see table). Tissue/Cell Type ATP (mM) ADP (mM) Pi (mM) Liver 3.5 1.8 5.0 8.0 2.7 Skeletal Muscle 8.0 0.9 Brain 2.6 0.7 Calculate AG' for ATP hydrolysis in liver. (NOTE: assume 25°C and omit the concentration of water in your calculations).Below is kinetic data obtained for an enzyme-catalyzed reaction. The enzyme concentration is fixed at 100 nM. Using a Lineweaver-Burke plot, calculate the kcat value for this reaction. Report your answer to three significant figures in units of 1/sec.
- 18. How much total energy is produced or consumed when Na+and K+ are transported by the Na+-K+-ATPase under the following conditions: Na+outside cell = 100mM, Na+inside = 10mM K out = 5mM, inside = 100mM; the transmembrane electrical difference = -70 mV (negative inside)? Temperature = 27° C. I recommend using scratch paper for working this out, but you must also outline your work (enough to show how you arrived at your answer) here. Be sure to include units where necessary! %3D %3!Calculate glucose concentration. Na (sodium) and glucose secondary active transport. Na transport (which drive glucose import) G=R*T*In(Na in/ Na out)+Z*F*Y(psi symbol) Na in=14mM Na out=145MM Z=+1 F=96.5 KJ/V*mol Y(psi)=-0.05V What is the glucose in and out concentration? Please be very through when explaining this calculation. (I am stuck at why the energy sign changes from negative to positive when using the calculated energy from sodium to glucose)Calculate all the glucose data into cmol. What is the number of cmol glucose at timepont 10.42 (19.65 g/L)?
- Below is kinetic data obtained for an enzyme-catalyzed reaction. The enzyme concentration is fixed at 100 nM. Using a Lineweaver-Burke plot, calculate the Vmax value for this reaction. Report your answer to four significant figures in units of uM/min.For an enzyme-catalyzed reaction, the velocity was determined at two different concentrations of the substrate. Estimate the value of Vmax. [S] (MM) 10 20 88 nmol/min 79 nmol/min 67 nmol/min V(nmol/min) 51 nmol/min 27 Not enough information is given to form a reasonable estimation. 48Use the data below to determine the maximum velocity [in mM/s] of a certain enzyme-catalyzed reaction. v = 0.152 mM/s at [S] = 0.334 mM v = 0.190 mM/s at [S] = 0.450 mM