9.10 The kinetic energy of molecules is often used to induce chemical reactions. The bond energy in an O 1 molecule is 8 . 22 × 1 0 – 19 J . Can an O 2 molecule traveling at 780 m/s provide enough energy to break the O = O bond? What is the minimum velocity of an O 2 molecule that would give a kinetic energy capable of breaking the bond if it is converted with 100% efficiency?
9.10 The kinetic energy of molecules is often used to induce chemical reactions. The bond energy in an O 1 molecule is 8 . 22 × 1 0 – 19 J . Can an O 2 molecule traveling at 780 m/s provide enough energy to break the O = O bond? What is the minimum velocity of an O 2 molecule that would give a kinetic energy capable of breaking the bond if it is converted with 100% efficiency?
Solution Summary: The author explains that the kinetic energy required to break the bond in an oxygen molecule should be calculated.
9.10 The kinetic energy of molecules is often used to induce chemical reactions. The bond energy in an
O
1
molecule is
8
.
22
×
1
0
–
19
J
. Can an
O
2
molecule traveling at 780 m/s provide enough energy to break the O = O bond? What is the minimum velocity of an
O
2
molecule that would give a kinetic energy capable of breaking the bond if it is converted with 100% efficiency?
Definition Definition Number of atoms/molecules present in one mole of any substance. Avogadro's number is a constant. Its value is 6.02214076 × 10 23 per mole.
Add conditions above and below the arrow that turn the reactant below into the product below in a single transformation.
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If you need to write reagents above and below the arrow that have complex hydrocarbon groups in them, there is a set of standard abbreviations you can use.
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T
H,N
NC
Dat
Indicate the order of basicity of primary, secondary and tertiary amines.
>
Classify each of the following molecules as aromatic, antiaromatic, or nonaromatic.
Cl
Z-
N
O aromatic
O antiaromatic
O nonaromatic
O aromatic
O antiaromatic
O nonaromatic
O aromatic
○ antiaromatic
nonaromatic
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