WebJun 10, 2016 · Explanation: Let's start by writing the chemical reaction for the dissociation of silver phosphate: Ag3P O4(s) ⇌ 3Ag+(aq) +P O−3 4 (aq) Now, set the Ksp value equal to the products (you don't care about the reactants because it's a solid). Ag is raised to the 3rd power because the coefficient is 3. Ksp = 1.8 × 10−5M = [Ag+]3(aq) + [P O3− 4](aq) WebMar 15, 2024 · Na3PO4(aq) → 3Na+ (aq) + PO− 4(aq) Now, notice that every mole of trisodium phosphate that dissociates in solution produces a total of. 3 moles Na+ +1 …
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WebChemistry 12 Tutorial 10—Solutions Chemistry 12—Tutorial 10 Solutions Page 2 of 5 pages Molar Solubility = 1.286 x 10-4 M To get solubility in g/L: 1.286 x 10-4 mol x 275.8 g Ag 2CO 3 = 3.5 x 10-2 g/L (or 0.035 g/L) L 1 mol Ag 2CO 3 ***** 3. WebA solution contains 3.0 x 10-6 M Na3PO4. What is the minimum concentration of AgNO, that would cause precipitation of solid Ag3PO4 ( Kap=1.8 x 10-18? ... calculate the concentrations of ions in a saturated solution of each of the following (see Appendix J for solubility products). (a) TlCl. (b) BaF2. (c) Ag2CrO4. (d) CaC2O4H2O (e) the mineral ... sims 4 breed out the ugly challenge
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Web1 point for correct prediction and explanation in terms of Q or LeChâtelier’s principle In a saturated solution of Ag3PO4at 25°C, the concentration of Ag+(aq) is 5.3 × 10–5M. The equilibrium- constant expression for the dissolving of Ag3PO4(s) in water is shown below. Ksp= [Ag +]3[PO WebExample \(\PageIndex{1}\): Application of Henry’s Law At 20 °C, the concentration of dissolved oxygen in water exposed to gaseous oxygen at a partial pressure of 101.3 kPa (760 torr) is 1.38 × 10 −3 mol L −1.Use Henry’s law to determine the solubility of oxygen when its partial pressure is 20.7 kPa (155 torr), the approximate pressure of oxygen in … WebSaturated NaCl contains Na + and Cl - ions each at a concentration of 5.4 M (moles/L). In this step, you added a few drops of concentrated hydrochloric acid (HCl) to one of your saturated NaCl samples. Concentrated HCl contains H + and Cl - ions each at a concentration of 12.0 moles/L. rbd road