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- HBR, O2, CH3OH all have comparable molecular masses. List the dominant type of IMF for the pure substances, then rank the strength of each compound based on IMFs within the samples. (1 = strongest 2= in between 3 = weakest ) Substance IMF Relative Strength HBR O2 CH3OHWhich of the following is the expression for the solubility product of Ba3(AsO4)2? Select one: O a. Ksp=[Ba²+j°[Aso,³ ? O b. Ksp=[3 x Ba²"]°12 x AsO, 1? O c. Ksp=3[Ba2+j3 + 2[AsO³]? O d. Kgp= [Ba3-1P[AsO1? O e. Kp=3[Ba²] × 2[AsOg³] Which one of the following cannot act as a buffer solution? Select one: O a. 1.0 M KF and 1.0 M HF rch F4 ES F7 F8 F9 F10 F11 F12 2$ & 4 7 9 R Y 1O F V BCalculate the formal concentration in m olarity of a sodium acetate soluti on prepared by diluting 22.5 mL. of a solution containing 25.0 ppm sodium acetate (NAC2H302) 82.03 g/mol to atotal of 0.500 liters of solution. 1. O2.75 x 10-5 Molar 2. O6.10 x 10-4Molar 3. O1.37 x 105 Molar 4. O5.48 x 10-6 Molar
- Complete the Ksp expression for Ag, CO3. Ksp = 8.46 x 10-12 %DWithout doing any calculations (just compare the correct Ksp values) complete the following statements: 1. magnesium fluoride is MORE soluble than A 2. magnesium fluoride is LESS soluble than B A. PbBr2 B. Ni(CN)2 C. COCO3 D. COSWrite the expression for the K of H2PO;. HPO OH %3D [H2PO;] [HPO H,0*] %3D [H2 PO,] [H3 PO3[H3O*] [H2PO;] K= [H3 PO3][OH] OK= %3D [H, PO
- The solubility of lead sulphate in water 0.038 g lit-1 at 25 o C. Calculate its solubility product at 25 o C. (molar mass of PBS04 = 303) 1.5725 x 10-8 .a O 1.5725 x 10-10 .b O 1.5725 x 10-6 .c O 1.5725 x 10-12 .d OQ2: the solubility products for a series of hydroxides are: BIOOH Be(OH)2 Tm(OH); Hf(OH)4 Which of the above hydroxides has: a- The lowest formal solubility in H,0? b- The highest formal solubility in a solution that is 0.1M with respect to the solute cation ? c- The highest formal solubility in a solution that is 0.1M with respect to OH? K=4*10-10 K-7*10-22 K-3*10-24 K-4 10-2573 Al ihe school ey decided to adt sodum carbonae (NaCOJ tohe sampled wster in the school tankin order to restore he sttavalue close to The balanced equartion for the reaction is Na,Co.e) + 2HC (ag - 2Nac (ag • H0()• co; (al 731 Calcuate the mass of sodum cartonate (Na,CO.) required to neutralize each 1 dm' of the sample water 732 Ater the neutralization. the water tasted saty. Give a reason for the saly taste of the water Refer to the equation above.
- A solution was prepared by dissolving 514 mg of K3Fe(CN)6 in sufficient water to give 758 ml of solution. Cal a. The molar analytical concentration of K3Fe(CN)6 b. pKThe proper equilibrium expression (Keq) of CH4(g) + 202(g) CO2(g) + 2H2O1).TUOv to lls worla taum uo 1o9TIOoni bolam od lliw elimu iboo lut o 19 4. Given the Borax reaction below, what would be the solubility product (Ksp) of borax at 40 °C, if the solubility of borax is 0.8 mol L¯1 at 40 °C? Na,B4O5 (OH)4 · 8H,O(s) = 2Na+ (aq) + B405(OH) (aq) +8H,O(1) sr vol (A) gnsb vgotino brrbae ar bo CHO)gab xglerino bisbasie orb il S