Where stated, classify reactions both by the key reaction event (PPT, A/B, R/O) and by changes in composition (COM, DEC, SDP, DDP). 6. Вaclz(aq) + _ КЗРО,(аq) —> Вaз (РО4)2(s) + KCI(g) balance, then classify: When 41 g(BaCl2) and 28 g(K3PO4) reacted and made 40 g(Ba3(PO4)2), g(KCI) formed also In a reaction mixture of 0.19 g of BaCl, and 0.59 g of K3PO4: The 0.19 g of BaCl, are enough to form grams of Ba3(P04)2. The 0.59 g of K3PO4 are enough to form grams of Ba3(PO4)2. The limiting reagent in the mixture is The theoretical yield of Ba3(PO4)2 is g If 150 mg of Ba3(PO4)2 was isolated, the percent reaction yield is %
Where stated, classify reactions both by the key reaction event (PPT, A/B, R/O) and by changes in composition (COM, DEC, SDP, DDP). 6. Вaclz(aq) + _ КЗРО,(аq) —> Вaз (РО4)2(s) + KCI(g) balance, then classify: When 41 g(BaCl2) and 28 g(K3PO4) reacted and made 40 g(Ba3(PO4)2), g(KCI) formed also In a reaction mixture of 0.19 g of BaCl, and 0.59 g of K3PO4: The 0.19 g of BaCl, are enough to form grams of Ba3(P04)2. The 0.59 g of K3PO4 are enough to form grams of Ba3(PO4)2. The limiting reagent in the mixture is The theoretical yield of Ba3(PO4)2 is g If 150 mg of Ba3(PO4)2 was isolated, the percent reaction yield is %
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Where stated, classify reactions both by the key reaction event (PPT, A/B, R/O) and by
changes in composition (COM, DEC, SDP, DDP).
6.
Bacl2(aq) + – K3PO4(aq) →
Ваз(РОд)2(s) +
KCI(g)
balance, then classify:
When 41 g(BaCl2) and 28 g(K3PO4) reacted and made 40 g(Ba3(PO4)2),
g(KCI) formed also
In a reaction mixture of 0.19 g of BaCl2 and 0.59 g of K3PO4:
The 0.19 g of BaCl, are enough to form
grams of Ba3(PO4)2.
The 0.59 g of K3PO4 are enough to form
grams of Ba3(PO4)2.
The limiting reagent in the mixture is
The theoretical yield of Ba3(PO4)2 is
If 150 mg of Ba3(PO4)2 was isolated, the percent reaction yield is
%
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