7.5.00 mL of stock solution is diluted to 25.00 mL, producing solution ALPHA. 10.00 mL of solution ALPHA is diluted to 25.00 mL, resulting in solution BETA. 10.00 mL of solution BETA is then diluted to 25.00 mL, producing solution GAMMA. Determine the dilution factor in producing solution ALPHA from the stock solution. b. Determine the dilution factor in producing solution BETA from the solution ALPHA. a. C. Determine the dilution factor in producing solution GAMMA from the stock solution BETA. d. Determine the overall serial dilution factor in producing solution GAYIMA from the stock solution.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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7.5.00 mL of stock solution is diluted to 25.00 mL, producing solution ALPHA. 10.00 mL of
solution ALPHA is diluted to 25.00 mL, resulting in solution BETA. 10.00 mL of solution
BETA is then diluted to 25.00 mL, producing solution GAMMA.
Determine the dilution factor in producing solution ALPHA from the stock solution.
b. Determine the dilution factor in producing solution BETA from the solution ALPHA.
Determine the dilution factor in producing solution GAMMA from the stock
a.
C.
solution BETA.
d. Determine the overall serial dilution factor in producing solution GAYIMA from the
stock solution.
Transcribed Image Text:7.5.00 mL of stock solution is diluted to 25.00 mL, producing solution ALPHA. 10.00 mL of solution ALPHA is diluted to 25.00 mL, resulting in solution BETA. 10.00 mL of solution BETA is then diluted to 25.00 mL, producing solution GAMMA. Determine the dilution factor in producing solution ALPHA from the stock solution. b. Determine the dilution factor in producing solution BETA from the solution ALPHA. Determine the dilution factor in producing solution GAMMA from the stock a. C. solution BETA. d. Determine the overall serial dilution factor in producing solution GAYIMA from the stock solution.
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