After performing the experiment and the subsequent workup you found the pKas below. Calculate the percent difference and report your answer with two places after the decimal. Data Table Part A Part B pKa 5.24 5.10
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After performing the experiment and the subsequent workup you found the pKas below. Calculate the percent difference and report your answer with two places after the decimal.
Data Table
Part A | Part B | |
---|---|---|
pKa | 5.24 | 5.10 |
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- Milligrams 47.0 milligrams = Multiple Choice 0.47 decigrams 4.7 centigrams 0.047 grams 0.00047 hectograms All of the answer choices are correct.Match the following formulas with their correct descriptions form the drop down menu provided. Formulas 1. D subscript p equals N over A 2. D subscript p equals N over V 3. increment N equals open parentheses N plus I close parentheses minus open parentheses M plus E close parentheses 4. g r equals fraction numerator increment N over denominator increment t end fraction 5. c g r equals fraction numerator increment N over denominator N end fraction Descriptions: Used to calculate the rate of change in the population in relation to its initial population number Answer Used to calculate the change in population size Answer Used to calculate the number of individuals occupying a volume of air or water Answer Used to calculate the change in the number of individuals in a given population over a period of time. Answer Use to calculate the number of individuals occupying a land area AnswerFrom the given Chi square, briefly interpret the results/ do the statistical analysis? The p-value from the table is 0.05
- What would the critical chi-square value be if my test involves six classes? 12.59 7.81 9.49 11.07Using this dehydration method, any error less than 10% is acceptable. A. If your percent error is less than 10% discuss what portions of the experiment were most important to achieve accurate results My percent error was 3.32% so answer the question aboveWhat is the approximate p?apa?I've tried entering 0, 1 and 0.5 and got marked wrong for the first part. The second part is correct.
- Question 7: read all before answering. A. Calculate how to make 10 ml of a 7.5% methylene blue stock solution (from solid powder). B. Calculate how to make a series of 1:10 dilutions of this stock. Imagine you’ll use 5 ml of each dilution for your experiment. Calculate the final concentrations of each tube. tube 1: take some stock, dilute it 1:10 with some water in a new tube = #1 tube 2: take some of #1, dilute it 1:10 with some water in a new tube tube 3: take some of #2, dilute it 1:10 with some water in a new tube tube 4: take some of #3, dilute it 1:10 with some water in a new tube C. First, decide the total volume to make of each tube – keep in mind measurement accuracy (consider preparing 20% more solution than what you will use). D. Then, calculate how much stock, water and final concentration of each. E. Then, instead of doing a serial dilution, calculate making each of the above solutions using the weight/volume % solution method. F. Pros and Cons of serial dilution method vs…Below is a simple set of weights obtained while immersing potato slices in various sugar solutions over 30 minutes. For each solution, calculate the rate of weight change over this 30-minute period. *****Please Show your work in the space below for step by step calculations Write your answer in standard notation and use 3 digits past the decimal point - e.g. 0.005, 0.030. (Note that the last zero in an answer is considered to be a digit). 0.0 M sucrose = _______ ___________ g/min 0.4 M sucrose = ________ _____________ g/min 0.6 M sucrose = ________ ____________ g/min 0.8 M sucrose = _________ ___________ g/min 1.0 M sucrose = _____________________ g/minAfter 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.
- p = sqrt(1/8500) = 0.00235 I think this is incorrectFigure 3: ● ● ● ● ● ● KDa ● 97.4 66.2 45.0 ● 31.0- 21.5 14.4 S-1 p-1 S-2 2-0 This figure was generated by centrifuging a pura sample of protein, removing the supernatant, and resuspending the pellet in the same volume as the supernatant to allow direct comparison. The supernatant and pellet samples were then prepared for SDS-PAGE identically and run via normal SDS-PAGE procedures. In the figure, "s" means supernatant and "p" means pellet. The text or number after the dash represents a different condition. For example, s-1 and p-1 are the supernatant and pellet samples under condition 1. It is not shown, but under wild-type conditions, essentially all of the protein is found in the supernatant. S-3 ● What does the intensity of each band represent? ● Would you find soluble protein in the supernatant or pellet? Why? Would you find aggregated protein in the supernatant or pellet? Why? For each condition (there are 5 different conditions), is there a higher percentage of the total protein…The schematic below shows a human body cannulated (tubes are inserted to the body's vasculature) at three heights, B, F, and H. Blood would rise to the same height in each tube, similar to a column of water cannulated at three heights. The tubes can also be filled with a saline solution with a similar density to blood so that this will be a safer experiment to perform. For a typical adult, h, is 1.5 m and hB is 1.85 m. Using the gauge pressure at heart height from the problem above, assume the density kg of whole blood is 1060 m³ and that the average arterial (heart) pressure of this individual has been measured to be 97 mmHg. Express your answer to four significant digits. B H hB ин Image from: M. M. Sternbeim and J. W. Kane, General Physics, 2nd edition (Wiley 1991). Hint: How would you model this problem? Blood vessels can be thought of as tubes containing columns of blood? Which equations would apply to find the blood pressure at different depths? (a) Calculate the gauge pressure…