The equilibrium M"t + Y MY"-4 is governed by the equation [MY"-] [M"+] [EDTA] K = ayı- · Kf = where Kf is the association constant of the metal and Y, ayt- is the fraction of EDTA in the form Y, and [EDTA] is the total concentration of free (unbound) EDTA. K/ is the conditional formation constant. How many grams of Na, EDTA 2 H,O (FM 372.23 g/mol) should be added to 1.51 g of Sr(NO,), 4 H,O (FM 283.69 g/mol) in a 500. mL volumetric flask to give a buffer with pSr+ = 8.00 at pH 10.00? log K, for Sr-EDTA is 8.72 and ayt at pH 10.00 is 0.30.

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K Question 3 of 15 >
The equilibrium
M"+ + Y4- = MY"-4
is governed by the equation
[MY"]
[M**] [EDTA]
K{
= ayl- · K =
where Kf is the association constant of the metal and Y, ayt- is the fraction of EDTA in the form Y-, and [EDTA] is the
total concentration of free (unbound) EDTA. K; is the conditional formation constant.
How many grams of Na, EDTA 2H,O (FM 372.23 g/mol) should be added to 1.51 g of Sr(NO,), 4 H,O (FM
283.69 g/mol) in a 500. mL volumetric flask to give a buffer with pSr+ = 8.00 at pH 10.00? log Kf for Sr-EDTA is 8.72 and
ayt at pH 10.00 is 0.30.
mass Na, EDTA · 2 H,0 =
g
Transcribed Image Text:K Question 3 of 15 > The equilibrium M"+ + Y4- = MY"-4 is governed by the equation [MY"] [M**] [EDTA] K{ = ayl- · K = where Kf is the association constant of the metal and Y, ayt- is the fraction of EDTA in the form Y-, and [EDTA] is the total concentration of free (unbound) EDTA. K; is the conditional formation constant. How many grams of Na, EDTA 2H,O (FM 372.23 g/mol) should be added to 1.51 g of Sr(NO,), 4 H,O (FM 283.69 g/mol) in a 500. mL volumetric flask to give a buffer with pSr+ = 8.00 at pH 10.00? log Kf for Sr-EDTA is 8.72 and ayt at pH 10.00 is 0.30. mass Na, EDTA · 2 H,0 = g
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