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Learning objectives

By the end of this section, you will be able to:

  • Define quantum number.
  • Calculate the angle of an angular momentum vector with an axis.
  • Define spin quantum number.

Physical characteristics that are quantized—such as energy, charge, and angular momentum—are of such importance that names and symbols are given to them. The values of quantized entities are expressed in terms of quantum numbers    , and the rules governing them are of the utmost importance in determining what nature is and does. This section covers some of the more important quantum numbers and rules—all of which apply in chemistry, material science, and far beyond the realm of atomic physics, where they were first discovered. Once again, we see how physics makes discoveries which enable other fields to grow.

The energy states of bound systems are quantized , because the particle wavelength can fit into the bounds of the system in only certain ways. This was elaborated for the hydrogen atom, for which the allowed energies are expressed as E n 1/ n 2 , where n = 1, 2, 3, ... . We define n to be the principal quantum number that labels the basic states of a system. The lowest-energy state has n = 1 , the first excited state has n = 2 , and so on. Thus the allowed values for the principal quantum number are

n = 1, 2, 3, ... . size 12{n=1, 2, 3, "." "." "." } {}

This is more than just a numbering scheme, since the energy of the system, such as the hydrogen atom, can be expressed as some function of n size 12{n} {} , as can other characteristics (such as the orbital radii of the hydrogen atom).

The fact that the magnitude of angular momentum is quantized was first recognized by Bohr in relation to the hydrogen atom; it is now known to be true in general. With the development of quantum mechanics, it was found that the magnitude of angular momentum L size 12{L} {} can have only the values

L = l l + 1 h size 12{L= sqrt {l left (l+1 right )} { {h} over {2π} } } {} l = 0, 1, 2, ... , n 1 , size 12{ left (l=0, 1, 2, "." "." "." ,n - 1 right )} {}

where l size 12{l} {} is defined to be the angular momentum quantum number    . The rule for l size 12{l} {} in atoms is given in the parentheses. Given n size 12{n} {} , the value of l size 12{l} {} can be any integer from zero up to n 1 size 12{n - 1} {} . For example, if n = 4 size 12{n=4} {} , then l size 12{l} {} can be 0, 1, 2, or 3.

Note that for n = 1 size 12{n=1} {} , l size 12{l} {} can only be zero. This means that the ground-state angular momentum for hydrogen is actually zero, not h / 2 π as Bohr proposed. The picture of circular orbits is not valid, because there would be angular momentum for any circular orbit. A more valid picture is the cloud of probability shown for the ground state of hydrogen in [link] . The electron actually spends time in and near the nucleus. The reason the electron does not remain in the nucleus is related to Heisenberg’s uncertainty principle—the electron’s energy would have to be much too large to be confined to the small space of the nucleus. Now the first excited state of hydrogen has n = 2 size 12{n=2} {} , so that l size 12{l} {} can be either 0 or 1, according to the rule in L = l l + 1 h size 12{L= sqrt {l left (l+1 right )} { {h} over {2π} } } {} . Similarly, for n = 3 size 12{n=3} {} , l size 12{l} {} can be 0, 1, or 2. It is often most convenient to state the value of l size 12{l} {} , a simple integer, rather than calculating the value of L size 12{L} {} from L = l l + 1 h size 12{L= sqrt {l left (l+1 right )} { {h} over {2π} } } {} . For example, for l = 2 size 12{l=2} {} , we see that

L = 2 2 + 1 h = 6 h = 0 . 390 h = 2 . 58 × 10 34 J s . size 12{L= sqrt {2 left (2+1 right )} { {h} over {2π} } = sqrt {6} { {h} over {2π} } =0 "." "390"h=2 "." "58" times "10" rSup { size 8{ - "34"} } " J" cdot s} {}

Questions & Answers

Discuss the differences between taste and flavor, including how other sensory inputs contribute to our  perception of flavor.
John Reply
taste refers to your understanding of the flavor . while flavor one The other hand is refers to sort of just a blend things.
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While taste primarily relies on our taste buds, flavor involves a complex interplay between taste and aroma
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omeprazole
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Not really sure
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to drain extracellular fluid all over the body.
asegid
The lymphatic system plays several crucial roles in the human body, functioning as a key component of the immune system and contributing to the maintenance of fluid balance. Its main functions include: 1. Immune Response: The lymphatic system produces and transports lymphocytes, which are a type of
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to transport fluids fats proteins and lymphocytes to the blood stream as lymph
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Anatomy is the identification and description of the structures of living things
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Anatomy is the study of the structure of the body, while physiology is the study of the function of the body. Anatomy looks at the body's organs and systems, while physiology looks at how those organs and systems work together to keep the body functioning.
AI-Robot
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Enzymes are proteins that help speed up chemical reactions in our bodies. Enzymes are essential for digestion, liver function and much more. Too much or too little of a certain enzyme can cause health problems
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Prince
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little girl okay how does the stomach protect itself from the damaging effect of HCL
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it is because of the enzyme that the stomach produce that help the stomach from the damaging effect of HCL
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function of digestive
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the diagram of the lungs
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37 degrees selcius
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37°c
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36.5
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37°c
Iyogho
the normal temperature is 37°c or 98.6 °Fahrenheit is important for maintaining the homeostasis in the body the body regular this temperature through the process called thermoregulation which involves brain skin muscle and other organ working together to maintain stable internal temperature
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37A c
Wulku
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anaemia is the decrease in RBC count hemoglobin count and PVC count
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acid
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Organ Systems Of The Human Body (Continued) Organ Systems Of The Human Body (Continued)
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Source:  OpenStax, College physics for ap® courses. OpenStax CNX. Nov 04, 2016 Download for free at https://legacy.cnx.org/content/col11844/1.14
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