Class 11 Chemistry Hydrogen in nepali | Learn with mitra
Автор: Learn with mitra
Загружено: 2023-03-24
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Time stamps Chapter
0:00 - 0:11 Introduction
0:11 - 1:36 Properties of Hydrogen
1:36 - 3:47 Position of Hydrogen in periodic table
3:47 - 5:42 Differences between Atomic and Nascent hydrogen
5:42 - 6:40 Some properties of Atomic Hydrogen
6:40 - 9:28 Important Question from Old is Gold
9:28 - 13:38 Isotopes of Hydrogen
13:38 - 15:01 Hydrogen Fuel
15:01 Heavy Hydrogen
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Hydrogen is the lightest and most abundant element in the universe, making up about 75% of all matter. It is a colorless, odorless, and tasteless gas that is highly flammable and reactive. Hydrogen has a wide range of applications, from fuel for rockets and vehicles to industrial processes and energy storage.
One of the most exciting potential uses for hydrogen is in fuel cells, which convert the gas directly into electricity without combustion, producing only water as a byproduct. This technology has the potential to revolutionize the way we power everything from cars and homes to entire cities.
Despite its abundance, hydrogen is not typically found in its pure form on Earth and must be extracted from other compounds through various processes. This can be done using renewable energy sources such as solar or wind power, making hydrogen a promising clean energy solution for a sustainable future.
Overall, hydrogen is a fascinating and versatile element with incredible potential for a variety of applications.
Isotopes of hydrogen are fascinating variants of the most basic element in the universe. While the standard hydrogen atom has one proton and one electron, isotopes of hydrogen have different numbers of neutrons, resulting in unique properties and potential applications.
The three main isotopes of hydrogen are protium, deuterium, and tritium. Protium is the most common isotope and makes up over 99% of all hydrogen on Earth. It has no neutrons and is the lightest of the three isotopes. Deuterium, also known as heavy hydrogen, has one neutron and is used in nuclear reactors, scientific research, and as a tracer in chemistry and biology. Tritium, with two neutrons, is radioactive and used in nuclear weapons and power plants, as well as in glowing keychains and exit signs.
Each isotope has its own unique characteristics and uses, from fueling fusion reactions to studying chemical reactions and biological processes. Isotopes of hydrogen are a fascinating and essential part of our understanding of the universe and our ability to harness its energy and resources.
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