The particle nature of light was first proposed by Albert Einstein, who suggested that light could be described as stream of particles called photons. A photon of wavelength I has an energy ( E ) given by the equation: E = h c / λ where E is the energy of the energy of the photon in j, h is Planck’s constant ( 6.626 × 10 − 34 J .s ) , and c is the speed of light ( 3.00 × 10 8 m / s ) . Calculate the energy of 1 mol of photons with a wavelength of 632 nm.
The particle nature of light was first proposed by Albert Einstein, who suggested that light could be described as stream of particles called photons. A photon of wavelength I has an energy ( E ) given by the equation: E = h c / λ where E is the energy of the energy of the photon in j, h is Planck’s constant ( 6.626 × 10 − 34 J .s ) , and c is the speed of light ( 3.00 × 10 8 m / s ) . Calculate the energy of 1 mol of photons with a wavelength of 632 nm.
Solution Summary: The author explains that the energy of one mole of photons with a given wavelength is to be calculated.
The particle nature of light was first proposed by Albert Einstein, who suggested that light could be described as stream of particles called photons. A photon of wavelength I has an energy (E) given by the equation:
E
=
h
c
/
λ
where E is the energy of the energy of the photon in j, h is Planck’s constant
(
6.626
×
10
−
34
J
.s
)
, and c is the speed of light
(
3.00
×
10
8
m
/
s
)
.
Calculate the energy of 1 mol of photons with a wavelength of 632 nm.
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.
In the Thermo Fisher application note about wine analysis (Lesson 3), the following
chromatogram was collected of nine components of wine. If peak 3 has a retention time of
3.15 minutes and a peak width of 0.070 minutes, and peak 4 has a retention time of 3.24
minutes and a peak width of 0.075 minutes, what is the resolution factor between the two
peaks? [Hint: it will help to review Lesson 2 for this question.]
MAU
300
200
T
34
5
100-
1 2
CO
6
7
8
9
0
2.4
2.6
2.8
3.0 3.2 3.4
3.6
3.8 4.0 4.2
4.4
4.6
4.8
5.0
5.2
Minutes
3.22
0.62
1.04
O 1.24
The diagram shows two
metals, A and B, which melt at
1000°C and 1400°C. State the
weight percentage of the
primary constituent (grains of
C) that would be obtained by
solidifying a 20% alloy of B.
1000°C
a+L
L+C
900°С
12
α
a+C
45
1200 C
L+y
140096
C+Y
a+ß
800°C
700°C
C+B
96
92
a+B
0
10
20
30
40
50
60
70 80 90 100
A
% peso B
B
8.
Choose the compound that will produce the spectrum below and assign the signals to the corresponding
protons.
2
4
3
ō (ppm)
OH
4
6 6
СОН
2
1
0
Chapter 9 Solutions
Introductory Chemistry, Books a la Carte Edition (6th Edition)
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