Connect Online Access 1-Semester for Organic Chemistry
6th Edition
ISBN: 9781260475609
Author: SMITH, Janice
Publisher: Mcgraw-hill Higher Education (us)
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Chapter 18.10, Problem 20P
The product formed when
a. b.
c.
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LABORATORY REPORT FORM
Part I. Determination of the Formula of a Known Hydrate
1. Mass of empty evaporating dish
3. Mass of hydrate
Using subtraction
or mass by difference,
find the mass of
the hydrate
76.96
-75.40
75.40g
76.968
1.568
01.56
76.90 g
2. Mass of evaporating dish + hydrate
4. Mass of evaporating dish + hydrate (after heating)
First 76.98 g
Third 76.66g
Second
Fourth (if necessary) 76.60g
5. Mass of anhydrate
6. Mass of water lost by the hydrate
7. Percent of water of hydration
(Show Calculations)
8. Moles of water
(Show Calculations)
mol
mass of water
=
MM of water (g/m)
9. Moles of anhydrate
(Show Calculations)
10. Ratio of moles of water to moles of anhydrate
11 F(Show Calculations)
11. Formula of hydrate
- Mass of water (g) x 100
% water hydration
g
g
%
Mass of hydrate (9) x IC
% = (Mass of hydrate- mass of an)
mass of hydrate (g)
% = (1.569-
× 100=
mol
1.569
mol Mol Mass of
anhydrate/MM
of anhydrate
12. What was the color of the hydrate?
blue
What was the color of the…
compared t-critical with t-calculated and 95% confidence interval to answer this question
Comparing two means. Horvat and co-workers used atomic absorption spectroscopy to determine the concentration of Hg in coal fly ash. Of particular interest to the authors was developing an appropriate procedure for digesting samples and releasing the Hg for analysis. As part of their study they tested several reagents for digesting samples. Their results using HNO3 and using a 1+3 mixture of HNO3 and HCl are shown here. All concentrations are given as ppb Hg sample.
HNO3: 161, 165, 160, 167, 166
1+3 HNO3–HCl: 159, 145, 140, 147, 143, 156
Determine whether there is a significant difference between these methods at the 95% confidence interval.
Chapter 18 Solutions
Connect Online Access 1-Semester for Organic Chemistry
Ch. 18.1 - Rank the following compounds in order of...Ch. 18.1 - Prob. 2PCh. 18.2 - Give the IUPAC name for each aldehyde.Ch. 18.2 - Prob. 4PCh. 18.2 - Give the IUPAC name for each ketone.Ch. 18.5 - Prob. 11PCh. 18.9 - Problem 21.17 Draw the products of the following...Ch. 18.9 - Problem 21.18 Outline a synthesis of each Wittig...Ch. 18.9 - Problem 21.19 Draw the products (including...Ch. 18.9 - Problem 21.20 What starting materials are needed...
Ch. 18.9 - Prob. 19PCh. 18.10 - Problem 21.22 The product formed when reacts with...Ch. 18.10 - Prob. 21PCh. 18.11 - Prob. 22PCh. 18.11 - Prob. 23PCh. 18.11 - Prob. 24PCh. 18.12 - Prob. 25PCh. 18.12 - Problem 21.28 Draw a stepwise mechanism for the...Ch. 18.13 - Problem 21.29 Draw the products of each...Ch. 18 - Problem 21.40 (a) Give the IUPAC name for A and B....Ch. 18 - 21.41 Rank the following compounds in order of...Ch. 18 - Prob. 39PCh. 18 - 21.43 Give the IUPAC name for each compound.
a....Ch. 18 - 21.44 Give the structure corresponding to each...Ch. 18 - Prob. 42PCh. 18 - 21.46 Draw the products of each reaction.
a. e....Ch. 18 - Prob. 44PCh. 18 - 21.48 Draw all stereoisomers formed in each...Ch. 18 - Prob. 54PCh. 18 - Prob. 55PCh. 18 - Prob. 56PCh. 18 - Devise a synthesis of each alkene using a Wittig...Ch. 18 - Prob. 60PCh. 18 - Prob. 62PCh. 18 - Prob. 63PCh. 18 - 21.64 Draw a stepwise mechanism for the following...Ch. 18 - 21.65 Draw a stepwise mechanism f or the following...Ch. 18 - Prob. 67PCh. 18 - 21.67 Draw a stepwise mechanism for each...Ch. 18 - Prob. 69PCh. 18 - Prob. 70P
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- Comparison of experimental data to “known” value. Monna and co-workers used radioactive isotopes to date sediments from lakes and estuaries.21 To verify this method they analyzed a 208Po standard known to have an activity of 77.5 decays/min, obtaining the following results. 77.09, 75.37, 72.42, 76.84, 77.84, 76.69, 78.03, 74.96, 77.54, 76.09, 81.12, 75.75 Do the results differ from the expected results at the 95% confidence interval?arrow_forwardExplain the difference between the propagated uncertainty and the standard deviation. Which number would you use to describe the uncertainty in the measurement? if the standard deviation is 0.01 and the propagated uncertainty is 0.03arrow_forwardPropagation of uncertainty. Find the absolute and percent relative uncertainty assuming the ±-values are random error. 7.65±0.04 + 5.28±0.02 – 1.12±0.01 85.6±0.9 × 50.2±0.7 ÷ 13.8±0.5 [4.88±0.07 + 3.22±0.05] / 1.53±0.02arrow_forward
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- Propagation of uncertainty. Find the absolute and percent relative uncertainty assuming the ±-values are random error. 65±0.04 + 5.28±0.02 – 1.12±0.01 6±0.9 × 50.2±0.7 ÷ 13.8±0.5 [4.88±0.07 + 3.22±0.05] / 1.53±0.02arrow_forwardMatch to correct spectrum and explain the bonds and frequencies used to tell what spectrum connected to the given option. Thanks.arrow_forwardDraw the virtual orbitals for the planar and pyramidal forms of CH3 and for the linear and bent forms of CH2arrow_forward
- Q2: Draw the molecules based on the provided nomenclatures below: (2R,3S)-2-chloro-3-methylpentane: (2S, 2R)-2-hydroxyl-3,6-dimethylheptane:arrow_forwardQ3: Describes the relationship (identical, constitutional isomers, enantiomers or diastereomers) of each pair of compounds below. ག H CH3 OH OH CH3 H3C OH OH OH ////////// C CH3 CH3 CH3 CH3 H3C CH 3 C/III..... Physics & Astronomy www.physics.northweste COOH H нош..... H 2 OH HO CH3 HOOC H CH3 CH3 CH3 Br. H H Br and H H H Harrow_forwardQ1: For each molecule, assign each stereocenter as R or S. Circle the meso compounds. Label each compound as chiral or achiral. OH HO CI Br H CI CI Br CI CI Xf x f g Br D OH Br Br H₂N R. IN Ill I -N S OMe D II H CO₂H 1/111 DuckDuckGarrow_forward
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