Question





4) An unknown concentration of NiSO4 solution is to be determined by colorimetric analysis using a spectrophotometer. The standard solutions are prepared as the following: 2.00 mL (the same procedures for 3.0 mL, 4.00 mL, 6.00 mL, 7.00 mL) of the stock solution of 1.00 M NİSO4 is transferred into a 25-mL volumen flask and diluted by adding distilled water to the mark line. The spectrophotometer is calibrated at the wavelength of 635 nm. The absorbance (A) readings and the concentrations of these standard solutions are tabulated Volumes of Concentrations of Absorbance the Stock the standard Solution (mL) 2.00 3.00 4.00 6.00 7.00 solutions (M) 0.132 0.198 0.264 0.390 0.458 a) Calculate the concentrations of the standard solutions and complete the column 2 in the above table riables) versus the absorbance readings (dependen variables) and draw the best straight-line possible. c) If the unknown absorbance is 0.250, what is the concentration of the unknown?
0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
4) An unknown concentration of NiSO4 solution is to be determined by colorimetric analysis using a...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • 4. (a) Determine the experimental concentration of protein in the unknown solution in mg/mL using the...

    4. (a) Determine the experimental concentration of protein in the unknown solution in mg/mL using the Part II Data Table and the equation on page 2 for the absorbance assay at 280 nm. Hint: Convert the molar concentration (M or moles/liter) of BSA from absorbance assay at 280 nm method to mg/mL, assume that the molecular weight of BSA = 66.5 kDa [7 points 6500 g/mol Post-lab 10 Report Form: Determination the Concentration of a Protein You must show your...

  • Can someone explain to me two possible objectives of this lab? Thank you Part B: Determining...

    Can someone explain to me two possible objectives of this lab? Thank you Part B: Determining the Concentration of a Solution: Beer's Law The objective of this experiment is to determine the concentration of an unknow sulfate (Ns04) known concentrations (standard solutions) An aliuot of each selution is tranaferred to a small rectangular cuvette that is placed into the solution and etry You are to prepare ive Ni504 solutions of ometer. The amount of Light that ) solution through use...

  • A student prepares a caffeine standard solution that has a concentration of 1858 ppm. To prepare...

    A student prepares a caffeine standard solution that has a concentration of 1858 ppm. To prepare a calibration curve, the student pipets various volumes of the standard solution into 50.0 mL volumetric flasks and dilutes to the fill line with water. The absorbance of each solution is measured in a 1.00 cm cuvette using the spectrophotometer and is shown in the table below. Calculate the concentration of each solution and create a calibration curve using the absorbance data provided. Based...

  • Dilution is a process in which the concentration of a solution is lowered by adding more...

    Dilution is a process in which the concentration of a solution is lowered by adding more solvent. Some of the reasons dilutions are performed are to minimize measurement errors when preparing a series of solutions at different concentrations, to save time and laboratory space, and to make more accurate measurements on an analytical balance when the target concentration is very low. The new concentration of a diluted solution can be determined from the following equation, sometimes called the dilution equation,...

  • Determine the equilibrium concentration of FeSCN2+ in each solution. (Page below are the initial concentrations of...

    Determine the equilibrium concentration of FeSCN2+ in each solution. (Page below are the initial concentrations of FE3+ and scn- for each solution ) Secondly, use stoichiometry to determine equilibrium FE3+ and SCN -. ( concentration used for FE and KSCN are both 0.002M ) the absorbance of each standard in the same test tube used to blank the spectrophoto standards from least to most concentrated, rinsing with a small amount of the next sta tilling the test tube. Record absorbance...

  • Question 1 Referring to Table 1 on page 9, what is the final concentration of Fe+2...

    Question 1 Referring to Table 1 on page 9, what is the final concentration of Fe+2 in ppm of the last standard solution assuming that you used exactly the target value of 8.00 ml Fe+2 in the 100 mL flask? For this question, assume that you added exactly the volumes of all reagents as listed in the table. (Remember that the stock solution concentration is 50.00 ppm.)  Show all your work carefully using good form and significant figures. Table 1: Components...

  • A student is instructed to determine the concentration of a solution of CoCl2 based on absorption...

    A student is instructed to determine the concentration of a solution of CoCl2 based on absorption of light (spectrometric/colorimetric method). The student is provided with a 0.10 M solution of CoCl2 with which to prepare standard solutions with concentrations of 0.020 M, 0.040 M, 0.060 Mand 0.080 M (a) Describe the procedure for diluting the 0.10 M solutions to a concentration of 0.020 M using distilled water, a 100 mL volumetric flask, and a pipet or buret. Include specific amounts where...

  • III. Standard Curves When we want to determine the concentration of an unknown solution, we typically measure a certain...

    III. Standard Curves When we want to determine the concentration of an unknown solution, we typically measure a certain property of standard solutions with our standard (known) solutions and create what's called a standard curve (or calibration curve). A standard curve relates two variables of certain known solutions. That way, when there is an unknown variable for a certain solution, it can be determined through the standard curve. When plotting standard curves, we always plot the independent variable on the...

  • Please help me answer questions from pre-lab homework Aspirin Analysis Lab 1) Calculate the molar concentration...

    Please help me answer questions from pre-lab homework Aspirin Analysis Lab 1) Calculate the molar concentration (molarity) of a 250 mL stock solution prepared from 0.5 g of pure acetylsalicylic acid. 2) Calculate the molar concentration (molarity) of a 50 mL solution prepared from 2.5 mL of the acetylsalicylic acid stock solution from question 1. This will be labeled as Standard Solution A. 3) Simlarly, calculate the molar concentrations (molarities) of 50 mL the four individual solutions prepared from 2,...

  • Procedure 1. Label four 50.0 mL volumetric flasks.)! through 4 2. Using a buret, add 10.00 ml of ...

    Procedure 1. Label four 50.0 mL volumetric flasks.)! through 4 2. Using a buret, add 10.00 ml of 2.00x10'MFeNO)D solution to each of the flasks 3. Using a buret, add 1.00 mL. 2.00 mL, 3.00 mL, and 4.00 mL of 2.00x 10 MKSCN 4. Fill each flask to the mark with 0.10 M HNO, solution. Stopper each flask and invert 5. Measure the absorbance of each solution at a wavelength of 447 nm (the absorbance reterred to in step 1...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT