From the given density and volume, the mass of the fuel is to be calculated in pounds. Concept Introduction: Density is defined as mass per unit volume. d = m V Here, m is the mass of the substance and V is the volume of the substance. The relation between liters and cubic centimeters is: 1 L = 1000 cm 3 The relation between grams, kilograms and pounds is: 1 g = 10 -3 kg 1 kg = 2 .20462 lb To convert a quantity, a u 1 from one unit to another i.e. u 1 → u 2 first write a conversion factor u 2 u 1 by the use of the relation of the given quantities. Multiply the conversion factor with the given quantity a u 1 and cancelling units to get the quantity in desired units. a u 1 × u 2 u 1 = a u 2
From the given density and volume, the mass of the fuel is to be calculated in pounds. Concept Introduction: Density is defined as mass per unit volume. d = m V Here, m is the mass of the substance and V is the volume of the substance. The relation between liters and cubic centimeters is: 1 L = 1000 cm 3 The relation between grams, kilograms and pounds is: 1 g = 10 -3 kg 1 kg = 2 .20462 lb To convert a quantity, a u 1 from one unit to another i.e. u 1 → u 2 first write a conversion factor u 2 u 1 by the use of the relation of the given quantities. Multiply the conversion factor with the given quantity a u 1 and cancelling units to get the quantity in desired units. a u 1 × u 2 u 1 = a u 2
Solution Summary: The author explains that the mass of the fuel is to be calculated in pounds from the given density and volume.
Interpretation: From the given density and volume, the mass of the fuel is to be calculated in pounds.
Concept Introduction:
Density is defined as mass per unit volume.
d=mV
Here, m is the mass of the substance and V is the volume of the substance.
The relation between liters and cubic centimeters is:
1L=1000cm3
The relation between grams, kilograms and pounds is:
1g=10-3kg1kg=2.20462lb
To convert a quantity, au1 from one unit to another i.e. u1→u2 first write a conversion factor u2u1 by the use of the relation of the given quantities.
Multiply the conversion factor with the given quantity au1 and cancelling units to get the quantity in desired units.
The Concept of Aromaticity
21.15 State the number of 2p orbital electrons in each molecule or ion.
(a)
(b)
(e)
(f)
(c)
(d)
(h)
(i)
DA
(k)
21.16 Which of the molecules and ions given in Problem 21.15 are aromatic according to the
Hückel criteria? Which, if planar, would be antiaromatic?
21.17 Which of the following structures are considered aromatic according to the Hückel
criteria?
---0-0
(a)
(b)
(c)
(d)
(e)
(h)
H
-H
.8.0-
21.18 Which of the molecules and ions from Problem 21.17 have electrons donated by a
heteroatom?
1. Show the steps necessary to make 2-methyl-4-nonene using a
Wittig reaction. Start with triphenylphosphine and an alkyl
halide. After that you may use any other organic or inorganic
reagents.
2. Write in the product of this reaction:
CH3
CH₂
(C6H5)₂CuLi
H₂O+
3. Name this compound properly, including stereochemistry.
H₂C
H3C
CH3
OH
4. Show the step(s) necessary to transform the compound on the
left into the acid on the right.
Bri
CH2
5. Write in the product of this
LiAlH4
Br
H₂C
OH
Chapter 2 Solutions
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