Molarity of a solution prepared by diluting 37.00 mL of 0.250 M potassium chloride to 150.00 mL is to be calculated. Concept introduction: Dilution is the process of converting a concentrated solution into a dilute solution by adding the solvent. In the resultant solution, the amount of solute remains fixed but the volume of the solution increases. The moles of solute before and after dilution remain fixed. The expression to relate the molarity of a concentrated and dilute solution is: M 1 V 1 = M 2 V 2 (1) Here, M 1 is the molarity of the dilute solution. V 1 is the volume of dilute solution. M 2 is the molarity of the concentrated solution. V 2 is the volume of the concentrated solution.
Molarity of a solution prepared by diluting 37.00 mL of 0.250 M potassium chloride to 150.00 mL is to be calculated. Concept introduction: Dilution is the process of converting a concentrated solution into a dilute solution by adding the solvent. In the resultant solution, the amount of solute remains fixed but the volume of the solution increases. The moles of solute before and after dilution remain fixed. The expression to relate the molarity of a concentrated and dilute solution is: M 1 V 1 = M 2 V 2 (1) Here, M 1 is the molarity of the dilute solution. V 1 is the volume of dilute solution. M 2 is the molarity of the concentrated solution. V 2 is the volume of the concentrated solution.
Molarity of a solution prepared by diluting 37.00 mL of 0.250M potassium chloride to 150.00 mL is to be calculated.
Concept introduction:
Dilution is the process of converting a concentrated solution into a dilute solution by adding the solvent. In the resultant solution, the amount of solute remains fixed but the volume of the solution increases. The moles of solute before and after dilution remain fixed.
The expression to relate the molarity of a concentrated and dilute solution is:
M1V1=M2V2 (1)
Here,
M1 is the molarity of the dilute solution.
V1 is the volume of dilute solution.
M2 is the molarity of the concentrated solution.
V2 is the volume of the concentrated solution.
(b)
Interpretation Introduction
Interpretation:
Molarity of a solution prepared by diluting 25.71 mL of 0.0706M ammonium sulfate to 500.00 mL is to be calculated.
Concept introduction:
Dilution is the process of converting a concentrated solution into a dilute solution by adding the solvent. In the resultant solution, the amount of solute remains fixed but the volume of the solution increases. The moles of solute before and after dilution remain fixed.
The expression to relate the molarity of a concentrated and dilute solution is:
M1V1=M2V2 (1)
Here,
M1 is the molarity of the dilute solution.
V1 is the volume of dilute solution.
M2 is the molarity of the concentrated solution.
V2 is the volume of the concentrated solution.
(c)
Interpretation Introduction
Interpretation:
Molarity of sodium ion in a solution made by mixing 3.58 mL of 0.348M sodium chloride with 500 mL of 6.81×10−2M sodium sulfate is to be calculated.
Concept introduction:
Molarity (M) is one of the concentration terms that determine the number of moles of solute present in per liter of solution. Unit of molarity is mol/L.
The expression to calculate the moles of ions from compound when molarity of solution and volume of solution are given is as follows:
Moles of ion from compound(mol)=[volume of solution(L)(1000mL1L)(molarityofsolution(mol)1L of solution)(moleofcharge on ion1mol of compound)] (3)
PLEASE READ!!! I DONT WANT EXAMPLES, I DONT WANT WORDS OR PARAGRAPHS FOR THE MECHANISM!!! THANKS
First image: QUESTION 6. I have to show, with ARROWS and STRUCTURES, the mechanism of the reaction at the bottom. Also I have to show by mecanism why the reaction wouldn't work if the alcohol was primary.
I also tried to draw the mechanism, tell me what to change. Please note that its an AMIDE thats formed not an AMINE the nitrogen has ONE hydrogen and one Phenyl-C-Phenyl. I already asked for this mechanism and got as a final product ...-NH2 not whats shown on the picture, thank you
Ths second part. QUESTION 3. I just need a way to synthesize the lactone A, I already started please continue from where I left it
Second image: I simply need the products, substrates or reagents, thank you
Indicate how to prepare a 10% sodium hydroxide (NaOH) solution to a slightly alkaline pH.
Chapter 4 Solutions
Chemistry: The Molecular Nature of Matter and Change