Given:
pH: 7.60
Concentration (M): 0.050
mL: 100mL
Determine the Mass of Each Component
Recall that buffers are formed from conjugate acid/base pairs. Using the information given about your assigned buffer, determine how much of each component (acid and base) you will need in order to prepare it in the lab. (This will require a system of equations because there are two “unknowns.”) Note: the conjugate acid in this case is H2PO4−, and the conjugate base is HPO42−.
1. Using equation (3) in your lab manual, solve for the ratio of (moles B/moles A).
2. From the ratio, solve for the moles B in terms of moles A. (Hint: you are not solving for the actual number of moles B at this point, you are only solving for the relationship of B to A.)
3. Using your concentration and volume, solve equation (1) in the lab manual for Stot. 2
4. Stot is the total moles of solute components (the sum of your acid and base combined). Using equation (2) in the lab manual, and substituting your answer to question 2 in for “moles B,” solve for the quantity of moles A.
5. Solve for the quantity of moles B by inserting your numerical value for moles A into the relationship found in question 2.
6. Determine how many grams of each component must be measured out in order to make the buffer solution. Note that the conjugate acid comes as a solid of NaH2PO4H2O, and the conjugate base comes as a solid of Na2HPO47H2O. Determine pH Values of a Buffered System
7. Suppose that you pour half of your buffer solution into a separate beaker and add 1.00 mL of 0.103 M HCl into it. What pH would you expect to measure with a pH probe? Show all work. (Hint: Is HCl an acid or a base? Is it strong or weak? How would it affect your buffer components?) 3
8. Suppose you add 1.00 mL of 0.098 M NaOH into the other half of your buffer solution. What pH would you expect to measure with a pH probe? Show all work. (Hint: Is NaOH an acid or a base? Is it strong or weak? How would it affect your buffer components?) Determine pH Values of an Unbuffered System
9. What pH would you expect to measure if you placed 52.5 mL of DI water into a beaker and added 1.00 mL of 0.103 M HCl? Show all work.
10. What pH would you expect to measure if you placed 51.3 mL of DI water into a beaker and added 1.00 mL of 0.098 M NaOH? Show all work.
Given: pH: 7.60 Concentration (M): 0.050 mL: 100mL Determine the Mass of Each Component Recall that...
Given: pH: 7.60 Concentration (M): 0.050 mL: 100mL Determine the Mass of Each Component Recall that buffers are formed from conjugate acid/base pairs. Using the information given about your assigned buffer, determine how much of each component (acid and base) you will need in order to prepare it in the lab. (This will require a system of equations because there are two “unknowns.”) Note: the conjugate acid, in this case, is H2PO4−, and the conjugate base is HPO42−. Equations 1...
I need help with questions 4 to 7. I have solved 1 to 3 as
reference. Thank you.
10:COMPARISON OF BUFFERED AND UNBUFFERED SYSTEMS To Sindents: This labit hranih alat date wahisand calculations of buffers and pH, there is no date. Your instructor will assign a specific buffer for or instructor will assign a specific buffer for you to make in the lab. "You will then be asked to perform serveral calculations based on your migue buffer assignment. way bandurite...
I need help with a buffer equation. I am having a hard time
answering the three questions on here.
The pH is 7.40 and the concentration in M is 0.100. the total
volume in mL is 100.00. The pKa of H2PO4- is 7.21. The conjugate
acid and base to make the phosphate buffer are H2PO4- and
HPO4^2-
Equation (3) in the lab manual is pH = pKa + log (molesB /
molesA).
Equation (1) is [buffer] = Stot / L...
I am needing help to solve this table. specifically the step 4
portion. My 2 compounds that I'm using for this experiment are 0.1
M NaHCO3 (acid) and 0.1 M Na2CO3. im having issues finding the
concentration and pKa of everything.
thank you!
Step 1 hydrogen carbonate/carbonate (HCO3/003-) [NaHCO₃ and Nagco ₂] Initial Buffer: Pour 10 mL of the acid component of your buffer into a 50-ml beaker. Add 10 mL of the conjugate base of your buffer, and mix....
A beaker with 1.00×102 mL of an acetic acid buffer with a pH of 5.000 is sitting on a benchtop. The total molarity of acid and conjugate base in this buffer is 0.100 M. A student adds 9.00 mL of a 0.430 M HCl solution to the beaker. How much will the pH change? The pKa of acetic acid is 4.740. Express your answer numerically to two decimal places. Use a minus ( − ) sign if the pH has...
A beaker with 1.00×102 mL of an acetic acid buffer with a pH of 5.000 is sitting on a benchtop. The total molarity of acid and conjugate base in this buffer is 0.100 MM. A student adds 7.40 mL of a 0.350 M HCl solution to the beaker. How much will the pH change? The pKa of acetic acid is 4.740. Express your answer numerically to two decimal places. Use a minus ( −− ) sign if the pH has...
A beaker with 1.00×102 mL of an acetic acid buffer with a pH of 5.000 is sitting on a benchtop. The total molarity of acid and conjugate base in this buffer is 0.100 mol L−1. A student adds 5.80 mL of a 0.440 mol L−1 HCl solution to the beaker. How much will the pH change? The pKa of acetic acid is 4.760.
Please help, I'm so confused!!!! This is due wednesday night!!!
i'm gonna fail :((((
pH of Buffer Solutions Procedure: Acetic Acid-Sodium Acetate Buffer (pKa acetic acid = 4.75) Weigh about 3.5 g of Na2C2H302 3H2O, record the exact mass, and add to a 250 ml beaker. Measure exactly 8.8 mL of 3.0 M acetic acid (use 10 mL grad cylinder) and add to the beaker containing the sodium acetate. • Measure exactly 55.6 mL of distilled water and add to...
In our experiment, we will be using a portion of the phosphate buffer system that is based upon the following equilibrium: H2PO4- HPO42- + H+ pKa = 7.2 In this case, H2PO4- will act as the acid and HPO42- will act as the base. Materials: 1M NaOH: 40.01 g/L of solution 1M HCl: 83 mL conc. HCl/L of solution Potassium phosphate, dibasic, K2HPO4, MW= 174.18 Potassium phosphate, monobasic, KH2PO4 MW= 136.09 **I already preformed this lab, but I struggled a...
A 1.32 L buffer solution consists of 0.121 M butanoic acid and 0.345 M sodium butanoate. Calculate the pH of the solution following the addition of 0.066 moles of NaOH. Assume that any contribution of the NaOH to the volume of the solution is negligible. The Ka of butanoic acid is 1.52 × 10-5. A 1.44 L buffer solution consists of 0.326 M propanoic acid and 0.103 M sodium propanoate. Calculate the pH of the solution following the addition of...