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Hydrogen Atom quiz
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What is the most abundant element in the universe?
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What is the most abundant element in the universe?
Hydrogen is the most abundant element, making up nearly 90% of all elements in the universe.
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What is the most abundant element in the universe?
Hydrogen is the most abundant element, making up nearly 90% of all elements in the universe.
What is the most common form of hydrogen found on Earth?
The most common form of hydrogen on Earth is H2 gas.
What are the atomic number and atomic mass of a hydrogen atom?
Hydrogen has an atomic number of 1 and an atomic mass of 1.
How many neutrons does a typical hydrogen atom have?
A typical hydrogen atom has 0 neutrons.
Name the three naturally occurring isotopes of hydrogen.
The three isotopes are protium (normal hydrogen), deuterium, and tritium.
How many neutrons are in deuterium and tritium?
Deuterium has 1 neutron, and tritium has 2 neutrons.
What type of hydride does hydrogen form when it reacts with metals or boron?
Hydrogen forms ionic hydrides when it reacts with metals or boron.
What is the charge of the hydride ion?
The hydride ion has a charge of -1 (H-).
What type of hydride does hydrogen form when it reacts with nonmetals?
Hydrogen forms covalent hydrides when it reacts with nonmetals.
What is the product when potassium reacts with hydrogen gas?
The product is potassium hydride (KH).
What is the formula for barium hydride?
The formula for barium hydride is BaH2.
When acting as a reducing agent, what happens to the hydride ion?
The hydride ion donates electrons and is oxidized, making it a reducing agent.
How does the hydride ion act in acid-base reactions?
The hydride ion acts as a strong base in acid-base reactions.
What is the reaction and significance of hydrogen gas with nitrogen gas?
Hydrogen gas reacts with nitrogen gas to form ammonia (NH3), which is important for making fertilizer.
What does it mean if a reaction is highly exothermic, such as the formation of ammonia from hydrogen and nitrogen?
A highly exothermic reaction releases a large amount of heat, making the process energetically favorable.