Laboratory Experiments for Chemistry: The Central Science (14th Edition)
14th Edition
ISBN: 9780134566207
Author: Theodore E. Brown, H. Eugene LeMay, Bruce E. Bursten, Catherine Murphy, Patrick Woodward, Matthew E. Stoltzfus, John H. Nelson, Kenneth C. Kemp
Publisher: PEARSON
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Textbook Question
Chapter 10, Problem 98AE
A gas bubble with a volume of 1.0 mm3 originates at the bottom of a lake where the pressure is 3.0 atm. Calculate it’s volume when the bubble reaches the surface of the lake where the pressure is 730 torr, assuming that the temperature doesn’t change.
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Learning Goal:
This question reviews the format for writing an element's written symbol. Recall that written symbols have a particular format. Written symbols use a form like this:
35 Cl
17
In this form the mass number, 35, is a stacked superscript. The atomic number, 17, is a stacked subscript. "CI" is the chemical symbol for the element chlorine. A general way to show this form is:
It is also correct to write symbols by leaving off the atomic number, as in the following form:
atomic number
mass number Symbol
35 Cl or
mass number Symbol
This is because if you write the element symbol, such as Cl, you know the atomic number is 17 from that symbol. Remember that the atomic number, or number of protons in the nucleus, is what defines the element. Thus, if 17 protons
are in the nucleus, the element can only be chlorine. Sometimes you will only see 35 C1, where the atomic number is not written.
Watch this video to review the format for written symbols.
In the following table each column…
need help please and thanks dont understand only need help with C-F
Learning Goal:
As discussed during the lecture, the enzyme HIV-1 reverse transcriptae (HIV-RT) plays a significant role for the HIV virus and is an important drug target. Assume a concentration [E] of 2.00 µM (i.e. 2.00 x 10-6 mol/l) for HIV-RT. Two potential drug molecules, D1 and D2, were identified, which form stable complexes with the HIV-RT.
The dissociation constant of the complex ED1 formed by HIV-RT and the drug D1 is 1.00 nM (i.e. 1.00 x 10-9). The dissociation constant of the complex ED2 formed by HIV-RT and the drug D2 is 100 nM (i.e. 1.00 x 10-7).
Part A - Difference in binding free eenergies
Compute the difference in binding free energy (at a physiological temperature T=310 K) for the complexes. Provide the difference as a positive numerical expression with three significant figures in kJ/mol.
The margin of error is 2%.
Part B - Compare difference in free energy to the thermal…
need help please and thanks dont understand only need help with C-F
Learning Goal:
As discussed during the lecture, the enzyme HIV-1 reverse transcriptae (HIV-RT) plays a significant role for the HIV virus and is an important drug target. Assume a concentration [E] of 2.00 µM (i.e. 2.00 x 10-6 mol/l) for HIV-RT. Two potential drug molecules, D1 and D2, were identified, which form stable complexes with the HIV-RT.
The dissociation constant of the complex ED1 formed by HIV-RT and the drug D1 is 1.00 nM (i.e. 1.00 x 10-9). The dissociation constant of the complex ED2 formed by HIV-RT and the drug D2 is 100 nM (i.e. 1.00 x 10-7).
Part A - Difference in binding free eenergies
Compute the difference in binding free energy (at a physiological temperature T=310 K) for the complexes. Provide the difference as a positive numerical expression with three significant figures in kJ/mol.
The margin of error is 2%.
Part B - Compare difference in free energy to the thermal…
Chapter 10 Solutions
Laboratory Experiments for Chemistry: The Central Science (14th Edition)
Ch. 10.2 - Prob. 10.1.1PECh. 10.2 -
Gallium melts just above room temperature...Ch. 10.2 - Prob. 10.2.1PECh. 10.2 - Prob. 10.2.2PECh. 10.3 - Prob. 10.3.1PECh. 10.3 - Prob. 10.3.2PECh. 10.4 - Prob. 10.4.1PECh. 10.4 - Prob. 10.4.2PECh. 10.4 - Prob. 10.5.1PECh. 10.4 - Prob. 10.5.2PE
Ch. 10.4 - Prob. 10.6.1PECh. 10.4 - Prob. 10.6.2PECh. 10.5 - Prob. 10.7.1PECh. 10.5 - Prob. 10.7.2PECh. 10.5 - Prob. 10.8.1PECh. 10.5 - Prob. 10.8.2PECh. 10.5 - Prob. 10.9.1PECh. 10.5 - Prob. 10.9.2PECh. 10.6 - Prob. 10.10.1PECh. 10.6 - Prob. 10.10.2PECh. 10.6 - Prob. 10.11.1PECh. 10.6 - Prob. 10.11.2PECh. 10.7 - Prob. 10.12.1PECh. 10.7 - Prob. 10.12.2PECh. 10.8 - Fill in the blanks for the following statement:...Ch. 10.8 - Prob. 10.13.2PECh. 10.8 - Prob. 10.14.1PECh. 10.8 - Prob. 10.14.2PECh. 10.9 - Calculate the pressure of a 2975-mol sample of N2...Ch. 10.9 - Prob. 10.15.2PECh. 10 - Prob. 1DECh. 10 - Prob. 1ECh. 10 - Prob. 2ECh. 10 - Consider the sample of gas depicted here_ What...Ch. 10 - Imagine that the reaction 2CO(g)+O2(g)2CO(g)...Ch. 10 - Suppose you have a fixed amount of an ideal gas at...Ch. 10 - Prob. 6ECh. 10 - Prob. 7ECh. 10 - Prob. 8ECh. 10 - Prob. 9ECh. 10 - Prob. 10ECh. 10 -
10.11 A thin glass tube 1 m long is filled with...Ch. 10 -
10.12 The graph below shows the change in...Ch. 10 - Prob. 13ECh. 10 - Prob. 14ECh. 10 - Prob. 15ECh. 10 - Prob. 16ECh. 10 - Prob. 17ECh. 10 - a. The compound 1-iodododecane is a nonvolatile...Ch. 10 - Prob. 19ECh. 10 - Prob. 20ECh. 10 - Prob. 21ECh. 10 - Prob. 22ECh. 10 - Prob. 23ECh. 10 - Prob. 24ECh. 10 - You have a gas at 25C confined to a cylinder with...Ch. 10 - Prob. 26ECh. 10 - Prob. 27ECh. 10 - Nitrogen and hydrogen gases react to form ammonia...Ch. 10 -
10.29
a. What conditions are represented by the...Ch. 10 - Prob. 30ECh. 10 - Prob. 31ECh. 10 - Prob. 32ECh. 10 - Prob. 33ECh. 10 - Prob. 34ECh. 10 - Prob. 35ECh. 10 - Prob. 36ECh. 10 - Calculate the number of molecules in deep breath...Ch. 10 - If the pressure exerted by ozone, O3, in the...Ch. 10 - A scuba diver’s tank contain 0.29 kg of O2...Ch. 10 - Prob. 40ECh. 10 - Prob. 41ECh. 10 - Prob. 42ECh. 10 - Chlorine is widely used to purify municipal water...Ch. 10 - Many gases are shipped in high-pressure...Ch. 10 - Prob. 45ECh. 10 - Prob. 46ECh. 10 - Rank the following gases from least to denser at...Ch. 10 - Prob. 48ECh. 10 - Prob. 49ECh. 10 - Prob. 50ECh. 10 - Prob. 51ECh. 10 - Prob. 52ECh. 10 - Prob. 53ECh. 10 - Prob. 54ECh. 10 - Magnesium can be used as a ‘getter” in evacuated...Ch. 10 - Prob. 56ECh. 10 - The metabolic oxidation of glucose, C6H12O6, in...Ch. 10 - Prob. 58ECh. 10 - Prob. 59ECh. 10 - Prob. 60ECh. 10 - Consider the apparatus shown in the following...Ch. 10 - Prob. 62ECh. 10 - A mixture containing 0.75 mol He(g), 0.330 mol...Ch. 10 - A deep-sea diver uses a gas cylinder with a volume...Ch. 10 - Prob. 65ECh. 10 - Prob. 66ECh. 10 - Prob. 67ECh. 10 - Prob. 68ECh. 10 - Prob. 69ECh. 10 - Prob. 70ECh. 10 - Prob. 71ECh. 10 - Prob. 72ECh. 10 - Prob. 73ECh. 10 - Prob. 74ECh. 10 - Prob. 75ECh. 10 - Indicate which of the following statement...Ch. 10 - Prob. 77ECh. 10 - Prob. 78ECh. 10 - Prob. 79ECh. 10 - Suppose you have two 1-L flasks, one containing N2...Ch. 10 - Prob. 81ECh. 10 -
10.8
Place the following gases in order of...Ch. 10 - Prob. 83ECh. 10 - Prob. 84ECh. 10 - Prob. 85ECh. 10 - Prob. 86ECh. 10 - Prob. 87ECh. 10 - Prob. 88ECh. 10 - Prob. 89ECh. 10 - Prob. 90ECh. 10 - Prob. 91ECh. 10 - Prob. 92ECh. 10 - Prob. 93ECh. 10 - Prob. 94ECh. 10 - Prob. 95ECh. 10 - Prob. 96ECh. 10 - Prob. 97AECh. 10 - A gas bubble with a volume of 1.0 mm3 originates...Ch. 10 - A 15.0-L tank is filled with helium gas at a...Ch. 10 - Prob. 100AECh. 10 - Prob. 101AECh. 10 - Prob. 102AECh. 10 - Prob. 103AECh. 10 - Prob. 104AECh. 10 - Prob. 105AECh. 10 - Prob. 106AECh. 10 - Prob. 107AECh. 10 - Prob. 108AECh. 10 - Prob. 109AECh. 10 - The density of gas of unknown molar mass was...Ch. 10 - A glass vessel fitted with a stopcock valve has a...Ch. 10 - Prob. 112AECh. 10 -
10.113 consider the following gases. All at STP:...Ch. 10 - Prob. 114AECh. 10 - Prob. 115AECh. 10 - Prob. 116AECh. 10 - Prob. 117AECh. 10 - Prob. 118IECh. 10 - Prob. 119IECh. 10 - Prob. 120IECh. 10 -
10.121 A 4.00-g sample of a mixture of CaO and...Ch. 10 - Prob. 122IECh. 10 - Prob. 123IECh. 10 - Chlorine dioxide gas (CIO2) is used as a...Ch. 10 - Natural gas is very abundant in many Middle...Ch. 10 - Prob. 126IECh. 10 - Prob. 127IE
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