Compute for the albumin to globulin (A/G) ratio using these data given Albumin= 51.9g/L Total protein = 75.5 g/L Note: answer should be in ratio form
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- Compute for the albumin to globulin ( A/G) ratio using these data given Albumin =51.9 g/L Total protein =75.5g/LTable 5: Effect of Dietary Fiber on Bile Acid Adsorption Optical Density (OD) of Colored Filtrate (Reflects Amount of Bile Acid in Filtrate) 1- OD (Reflects Amount of Bile Acid Adsorbed by Food Particles) 000 Fiber- Fiber- Fiber- Fiber- Bile Acid Standard Standard Rich Rich Bile Acid Standard Standard Rich Rich With Buffer Meal Meal Meal Meal With Buffer Meal Meal Meal Meal Experimental Solution (No Trials With Bile Solution (No Fibers) Without Without With Bile Without With Bile Without With Bile Fibers) Bile Acid Bile Acid Bile Acid Bile Acid 1 1 0.55 0.4 0.00 2 1 0.61 0.4 3 1 0.52 0.32 Average 0.00 0.00 0.00 0.00 Equations (fx) Use these formulas for making your calculations. Round your answer to the nearest tenth. Averages Add the values from the three trials (or subjects); divide by three. Index reflecting the level of bile acid adsorption This index is equal to 1 - OD, where OD is optical density of the colorized supernatant of mixtures of the studied food. This index reflects…Given this: Protein Isoelectric pH Molecular weight (kDa) Ovalbumin 4.6 45 Insulin 5.4 5.7 Fibrinogen 5.8 340 Y-globulin 6.6 160 Collagen 6.6 115 Hemoglobin (monomer) 7.1 16 Myoglobin 7.0 16.7 What is the appearance after visualization of a protein mixture containing the seven proteins above if isoelectric focusing is done?
- After three minutes, the concentration of drug Zip in the red blood cells is 10 mmoles l-1. What is the average rate of entry of drug Zip into the red blood cells in units of moles min-1 red blood cell-1 during the first three minutes after placing the red blood cells into the bathing solution? Assume that each red blood cell occupies about 1 x 10-13 liters.Molecular diameters of proteins IgG and TNFα are 11.2 nm and 4.4 nm, respectively. The diffusion coefficient of IgG in a dilute aqueous solution at 37oC is 2.8 ⤬ 10-7 cm2/s. Estimate the diffusion coefficient of TNFα in a dilute aqueous solution at the same temperature.Give typed full explanation Bradykinin is a plasma peptide and a potent vasodilator. It is derived from a large precursor called kininogen. Bradykinin has the following structure: Arg-Pro-Pro-Gly-Phe-Ser-Pro-Phe-Arg. Which amino acids in bradykinin have reactive functional groups in their side chains? What are these reactive functional groups? What does the name "kininogen" indicate?
- A protein required 6.8 min to travel 82 cm to the detector in a 96 cm -long capillary tube with 25.4 kV between the ends. Find the apparent electrophoretic mobility. How many femtomoles of 2.4 μM protein are injected electrokinetically into a 50 μm diameter capillary at 5.0 kV for 3.0 sec. if the sample has half of the conductivity of the background electrolyte.Paclitaxel is used to treat ovarian cancer by infusion at a concentration of 0.6 mg/mL over 24 hours. A dose of 135 mg/m² has been prescribed for Sero. Sero is 1.06 m tall and weighs 92 kg. Paclitaxel comes in vials of 150 mg/25 mL. Calculate the volume of 5%w/v glucose solution that would be required to dilute the concentrated solution to prepare an paclitaxel solution of the required strength.What is the approximate rate of change of A340 measured? i.e. ΔA340 / min = __________ What rate of change of A340 would you predict if 30 ml of the ADH solution was tested in the same way (i.e. half the amount of protein) ? i.e. ΔA340 / min = __________ What rate of change of A340 would you predict if 60 ml of a 0.5 μM ADH solution was tested in the same way? i.e. ΔA340 / min = __________ As well as writing your answers, explain your reasoning.
- Paclitaxel is used to treat ovarian cancer by infusion at a concentration of 0.6 mg/mL over 24 hours. A dose of 135 mg/m² has been prescribed for Sero. Sero is 1.06 m tall and weighs 92 kg. Paclitaxel comes in vials of 150 mg/25 mL. Calculate the volume of 5%w/v glucose solution that would be required to dilute the concentrated solution to prepare an paclitaxel solution of the required strength. Answer: You did not give the correct unit. The correct answer is: 333 mL XThe following table shows experimental results of the glucose transport rate, mM/sec, following facilitated diffusion by glucose carrier proteins. (Recall: the starting conc. L represents glucose added to one side of the membrane; distilled water, omM of glucose was added to the other side of the membrane). The rate of glucose transport was 0.0031 mm/sec with 8mM of glucose (run number 4, highlighted); the rate decreased to 0.0017 mM/sec with 10mM of glucose (run 5, highlighted). Why was the rate of glucose transport slower when the concentration gradient was increased? Experiment Results Run Number Solute 1 1 2 2 3 33 4 4 5 6 6 Na Ch Glucose Na Ch Glucose Na Ch Glucose Nat Ch Glucose Na Ch Glucose Nat Cl Glucose Start Conc. L Start Conc. R (MM) (mM) 0.00 0.00 2.00 0.00 0.00 0.00 8.00 0.00 0.00 0.00 2.00 0.00 0.00 0.00 8.00 0.00 0.00 0.00 10.00 0.00 2.00 0.00 2.00 0.00 Carriers 500 500 500 500 700 700 700 700 100 100 700 700 Rate (mm/sec) 0.0000 0.0008 0.0000 0.0023 0.0000 0.0010…A tetrapeptide, glutamate-glycine-alanine-lysine, is prepared at at concentration of 1 mM (0.001 M) and is measured in the standard setup (pathlength of 1 cm). What is the approximate absorbance of this peptide at 280 nm? Hint: if the peptide contained a single tryptophan, the answer would be about 10. 10 280 1 0