2. Complete the chart below. You will need to look up Molecular Weights (MW), melting points (MP), boiling points (BP) and density. Keep in mind that liquids and solutions do not always have reported melting points (MP) or boiling points (BP). You do not need to find amounts, mmol or molar equivalence of 9-fluorenone. If the compound is a solid the boiling point (BP) and density (d) are often not reported. Molar equivalence is defined as the ratio of the moles of compound to the moles of the limiting reagent. MW MP Density Molar Compound Amount mmol BP (°C) (g/mol) C) (g/mL) Equivalence 9-Fluorenol 100 mg 6 ml Acetone 0.25 mL Glacial Acetic Acid 1.093 NaOCI 2 ml (5% wt/wt in H,0) 9-fluorenone 3. Calculate the theoretical yield for reaction based on the chart above and the reaction scheme at the top of this assignment.
2. Complete the chart below. You will need to look up Molecular Weights (MW), melting points (MP), boiling points (BP) and density. Keep in mind that liquids and solutions do not always have reported melting points (MP) or boiling points (BP). You do not need to find amounts, mmol or molar equivalence of 9-fluorenone. If the compound is a solid the boiling point (BP) and density (d) are often not reported. Molar equivalence is defined as the ratio of the moles of compound to the moles of the limiting reagent. MW MP Density Molar Compound Amount mmol BP (°C) (g/mol) C) (g/mL) Equivalence 9-Fluorenol 100 mg 6 ml Acetone 0.25 mL Glacial Acetic Acid 1.093 NaOCI 2 ml (5% wt/wt in H,0) 9-fluorenone 3. Calculate the theoretical yield for reaction based on the chart above and the reaction scheme at the top of this assignment.
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:2. Complete the chart below. You will need to look up Molecular Weights (MW), melting
points (MP), boiling points (BP) and density. Keep in mind that liquids and solutions do
not always have reported melting points (MP) or boiling points (BP). You do not need to
find amounts, mmol or molar equivalence of 9-fluorenone. If the compound is a solid
the boiling point (BP) and density (d) are often not reported. Molar equivalence is
defined as the ratio of the moles of compound to the moles of the limiting reagent.
MW
MP
Density
Molar
Compound
Amount
mmol
BP (°C)
(g/mol)
°C)
(g/mL)
Equivalence
9-Fluorenol
100 mg
6 ml
Acetone
0.25 ml
Glacial Acetic Acid
1.093
NaOCI
2 ml
(5% wt/wt in H,0)
9-fluorenone
3. Calculate the theoretical yield for reaction based on the chart above and the reaction
scheme at the top of this assignment.
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