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  1. Question #c79f3 - Socratic

    As you know, molarity is a measure of the number of moles of solute, which in your case would be phosphoric acid, present in

  2. If #"NaOH" (aq)# that was originally #"0.300 M"# is left ... - Socratic

    If #"NaOH" (aq)# that was originally #"0.300 M"# is left exposed to the air and #"0.0200 M"# of #"CO"_2# dissolves in the solution, but right at that point the student catches his mistake and …

  3. When 2.00 L of 1.00 M of AgNO_3 and 1.25 L of 1.00 M of CaI

    When 2.00 L of 1.00 M of AgN O3 and 1.25 L of 1.00 M of C aI 2 fully react, what is the molarity of C a2 +?

  4. Question #1565c - Socratic

    Apr 22, 2015 · The molarity of the silver nitrate solution is 0.394 mM. The balanced chemical equation for this double replacement reaction looks like this AgN O3(aq) +KCl(aq) → AgCl(s) …

  5. Determine the formula of A. Molarity B. Molality C. Mole ... - Socratic

    Well, "molarity" is simply the quotient..."molarity"="moles of solute"/"volume of solution" And "molality"="moles of solute"/"kilograms of solvent"... For most, dilute, AQUEOUS solutions, …

  6. What is the molarity of a solution prepared by dissolving 3.

    May 18, 2018 · What is the molarity of a solution prepared by dissolving 3.14 moles of NaOH in water and diluting to a total volume of 4.0 L?

  7. Moles n solution: Calculate the molarity of a solution of ... - Socratic

    Moles n solution: Calculate the molarity of a solution of NaOH made by dissolving 2moles of sodium hydroxide in water and making up to 250cm^3?

  8. Site Map - Dilution Calculations Questions and Videos | Socratic

    What is the molarity of a stock solution if 10 mL is diluted to 400 mL with a concentration of 0.5M?

  9. Sulfuric Acid with a molarity of .001 has a pH of 2.75. You

    Sulfuric Acid with a molarity of .001 has a pH of 2.75. You want to dilute 1mL of this acid to a pH of 5.2. If you want to dilute 1mL of the original solution, what would the final volume of solution …

  10. Question #4f37f - Socratic

    Now, a solution's molarity is determined by taking the number of moles of solute present in 1 L of solution. To make the calculations easier, select a 1.0-L sample of this glucose solution.