Uploaded April 2013 | Updated September 2026, 3 weeks ago
Lungs - Part of Respiratory system | Human anatomy | 3D animation videos
Humans for respiration need a continuous supply of oxygen.
Humans take in oxygen and leave out carbon dioxide, which is the poisonous waste product in the process of respiration.
The lungs are essential respiratory organs in the human body.
The human anatomy consists of two lungs. They can be called as the left and the right lung, respectively.
The left lung has two lobes while the right lung has three lobes.
The lungs contain approximately 1500 miles of airways and about 300 to 500 million alveoli.
The total surface area is an approximate of 70m^2 (m-square) in a fully grown human body, (roughly the size of a badminton court).
An alveoli , also known as "little cavity", is derived from the Latin word "alveolus", and these are the terminal ends of a respiratory tree and are shaped like a hollow-cavity.
The average respiratory rates of a resting adult is about 10-20 breaths per minute.
We spend about 1/3rd of a minute in inhaling.
The total breathing capacity, however depends on the individual, that is, it varies on factors depending on age, height, weight and sex.
It is observed that females tend to have a 20-25% lower breathing capacity than males, while tall people tend to have a larger lung capacity than shorter people. And people living in low-lined areas, that is, at the sea-level, tend to have a smaller lung capacity than those people living at a higher altitude.
People who smoke have a lower lung capacity than non-smokers.
Lungs function similar to that of bellows, which is a mechanical device that blows strong current of air.
**Lungs convert the hormones that cause the narrowing of blood vessels and drives the blood pressure up and also remove the waste products in the blood.**
A lung is measured to be between 10-12 inches long. The two lungs are separated by a structure called "media sternum".
The lungs are covered by a structure known as the "pulmonary pleura".
The lung is an important organ that performs various functions that happen every second of our lives, out of which breathing is considered to be the most essential.
As previously mentioned, the lungs take in oxygen and give out carbon dioxide.
The air that we breathe in, enters the human body and reaches to the lungs through a windpipe , called trachea, which branches further into two main tubes which distributes the air supply to both the left and the right lung , respectively.
These tubes further divide themselves into 22 times the number of branches resulting in the formation of more than 100,000 smaller tubes, called bronchioles, and about 300 million air sacs( or alveoli), which are only about a 0.3 mm in diameter.
Since the walls of the alveoli are 1/50th the thickness of a tissue paper and are also covered up with millions of tiny blood vessels, called capillaries, there is a free-flow exchange of both, oxygen and carbon dioxide, between the body and the environment.
The lungs play an important role in the body's defense against infection and other harmful environmental factors.
Air that is inhaled either through the nose or the mouth may consist of various dust particles or infectious agents, and ended up getting stored in the lungs.
Mucus, which is a sticky liquid that is produced by the lungs, may trap the inhaled particles while the lung's white blood cells , that serve as protective agents, aid in the engulfment and destruction of such harmful matter and bacteria.
Hence one good alternative is to cough. Coughing helps clear the mucus and other materials from the lungs.
Lungs - Part of Respiratory system | Human anatomy | 3D animation videos
Humans for respiration need a continuous supply of oxygen.
Humans take in oxygen and leave out carbon dioxide, which is the poisonous waste product in the process of respiration.
The lungs are essential respiratory organs in the human body.
The human anatomy consists of two lungs. They can be called as the left and the right lung, respectively.
The left lung has two lobes while the right lung has three lobes.
The lungs contain approximately 1500 miles of airways and about 300 to 500 million alveoli.
The total surface area is an approximate of 70m^2 (m-square) in a fully grown human body, (roughly the size of a badminton court).
An alveoli , also known as "little cavity", is derived from the Latin word "alveolus", and these are the terminal ends of a respiratory tree and are shaped like a hollow-cavity.
The average respiratory rates of a resting adult is about 10-20 breaths per minute.
We spend about 1/3rd of a minute in inhaling.
The total breathing capacity, however depends on the individual, that is, it varies on factors depending on age, height, weight and sex.
It is observed that females tend to have a 20-25% lower breathing capacity than males, while tall people tend to have a larger lung capacity than shorter people. And people living in low-lined areas, that is, at the sea-level, tend to have a smaller lung capacity than those people living at a higher altitude.
People who smoke have a lower lung capacity than non-smokers.
Lungs function similar to that of bellows, which is a mechanical device that blows strong current of air.
**Lungs convert the hormones that cause the narrowing of blood vessels and drives the blood pressure up and also remove the waste products in the blood.**
A lung is measured to be between 10-12 inches long. The two lungs are separated by a structure called "media sternum".
The lungs are covered by a structure known as the "pulmonary pleura".
The lung is an important organ that performs various functions that happen every second of our lives, out of which breathing is considered to be the most essential.
As previously mentioned, the lungs take in oxygen and give out carbon dioxide.
The air that we breathe in, enters the human body and reaches to the lungs through a windpipe , called trachea, which branches further into two main tubes which distributes the air supply to both the left and the right lung , respectively.
These tubes further divide themselves into 22 times the number of branches resulting in the formation of more than 100,000 smaller tubes, called bronchioles, and about 300 million air sacs( or alveoli), which are only about a 0.3 mm in diameter.
Since the walls of the alveoli are 1/50th the thickness of a tissue paper and are also covered up with millions of tiny blood vessels, called capillaries, there is a free-flow exchange of both, oxygen and carbon dioxide, between the body and the environment.
The lungs play an important role in the body's defense against infection and other harmful environmental factors.
Air that is inhaled either through the nose or the mouth may consist of various dust particles or infectious agents, and ended up getting stored in the lungs.
Mucus, which is a sticky liquid that is produced by the lungs, may trap the inhaled particles while the lung's white blood cells , that serve as protective agents, aid in the engulfment and destruction of such harmful matter and bacteria.
Hence one good alternative is to cough. Coughing helps clear the mucus and other materials from the lungs.
![Electronic configuration of atoms using Aufbau, Paulis principle and Hunds rule - Chemistry
Electronic Configuration of Atoms
We know that atomic orbitals are the sub-stationary states or the regions in space where the electrons revolve around the nucleus in an atom. Electronic configuration of atoms is representation of the occupation of electrons in the orbitals. In other words, electronic configuration of atoms specifies the order in which electrons fill up the orbitals in the periodic table. The order in which these electrons are filled into the atomic orbitals are controlled by three crucial guidelines or principles which include:
1. Aufbau or building up principle
2. Hunds rule and
3. Paulis exclusion principle
Let us begin with understanding Aufbau Principle. According to this principle an electron always occupies the lowest energy orbital first before filling the higher level. For example, an electron always occupies 2s, the lower energy orbital, first instead of the higher 3s orbital.
The Aufbau or building-up principle can be explained with the example of Hydrogen Atom. Hydrogen has one electron. This electron enters the 1s orbital which has the lowest energy.
In other words, building-up principle states that the incoming electrons go to an orbital which has the least (n+l) value. However, the orbital having lower n value will be occupied first, in case any two orbitals have the same (n+l) value.
Consider the example of Silicon whose atomic number is 14. Twelve electrons can be accommodated in 1s, 2s, 2p, 3s orbitals. Now, the last two electrons can enter into either 3p or 4s orbital. The (n+ l) values of these orbitals are the same, that is,
3p orbital has a (n+l) value of 3+1=4 and 4s has (n+l) value of 4+0 = 4
This means, both the orbitals have the same (n+l) value. But the 3p orbital has n value, that is 3, which is less than the n value of 4s, which is 4. Therefore thirteenth and fourteenth electrons occupy the 3p orbital first. Thus the electronic configuration of Si is [Ne] 3s 23p2.The superscript represents the number of electrons present in the corresponding orbital.
The second important rule to determine the electronic configuration of an atom is the Hunds Rule. It says electron pairing happens only after all the available degenerate orbitals are occupied by one electron each.
Let us understand Hunds rule with the help of an example. Consider the element Oxygen with Z=8. I has 8 electrons, the first electron goes into the 1s orbital of the K-Shell. The second electron will be paired up with the first in the same 1s orbital. Similarly the third and fourth electrons will occupy the 2s orbital of L-Shell. The Fifth electron goes into one of the three 2p orbitals of L-Shell. Let that be 2px. Since the three p-orbitals i.e., 2px,2py and 2pz are degenerate , the sixth electron goes into 2py or 2pz but not 2px. Let us say it goes to 2py. Since 2pz is a degenerate orbital, the seventh electron goes to 2pz instead of pairing up with electron in 2px or 2py.
Now, since all the 3 sub-orbitals have one electron each, the eighth electron can pair up with any of the three electrons in 2px, 2py and 2pz orbitals. Thus the electronic configuration of Oxygen can be written as 1s1.2s2. 2px2 .2py1. 2pz1. The arrows indicate electrons with spin +1/2 and -1/2. Let us consider the nitrogen atom. it has 7 electrons. The first six electrons have the same arrangement as that of carbon atom 1s1.2s2. 2px1 .2py1. The seventh electron will enter only in 2pz but can not enter into 2px or 2py orbital. Thus the configuration is 1s1.2s2. 2px1 .2py12pz1.
The third important rule for electronic configuration, that is, the Paulis Exclusion Principle states that no two electrons will have the four quantum numbers same. This means that two electrons can ever have any identical values of n, l, m and s values. Because of this rule a single orbital can have only 2 electrons. Electronic configuration of atoms using Aufbau, Paulis principle and Hunds rule - Chemistry](https://i.ytimg.com/vi/B3Q5a3q_5b0/mqdefault.jpg)









