Paclitaxel, known as Taxol, (CaHs,NO,4) has been known as an effective anti-cancer drug. It is effective in curing breast cancer and ovarian cancer including some other types of cancer. Taxol slows down cell division by biding to microtubules. Answer the following questions. A. Determine the molar mass of Taxol. B. Calculate the mass of 0.56 moles of Taxol in g unit. C. Calculate the mass of 3.011x 10" molecules of Taxol in g unit. D. How many C atoms are present in 0.500 g of Taxol?
Paclitaxel, known as Taxol, (CaHs,NO,4) has been known as an effective anti-cancer drug. It is effective in curing breast cancer and ovarian cancer including some other types of cancer. Taxol slows down cell division by biding to microtubules. Answer the following questions. A. Determine the molar mass of Taxol. B. Calculate the mass of 0.56 moles of Taxol in g unit. C. Calculate the mass of 3.011x 10" molecules of Taxol in g unit. D. How many C atoms are present in 0.500 g of Taxol?
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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Paclitaxel, known as Taxol, (CHs,NO14) has been known as an effective anti-cancer drug. It
is effective in curing breast cancer and ovarian cancer including some other types of cancer. Taxol
slows down cell division by biding to microtubules. Answer the following questions.
A. Determine the molar mass of Taxol.
B. Calculate the mass of 0.56 moles of Taxol in g unit.
C. Calculate the mass of 3.011x10" molecules of Taxol in
g unit.
D. How many C atoms are present in 0.500 g of Taxol?
E. How many grams of C are present in 0.500 g of Taxol?
F. If0.150 g of Taxol was dissolved in a 100.0 ml. solution, what is the concentration of Taxol
in the unit of M (molarity)
G. What ml of the Taxol solution (prepared in F) will be required to prepare for 10.0 ml of
5.00 x 10 M (molarity)
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