All elements in the Group 0 - Inert Gases group (exc. Radon) are highly unreactive and so don't react with nearly any substance.
Inert Gases;
Helium
Neon
Argon
Krypton
Xenon
(Radon)
An element and a compound can undergo a chemical reaction called a single replacement reaction. In this type of reaction, the element replaces one of the elements in the compound, forming a new compound and a different element as a product.
A single displacement reaction is a type of chemical reaction where a free element replaces another element in a compound. This occurs when a more reactive element displaces a less reactive element in a compound, forming a new compound and releasing the displaced element.
The product of a decomposition reaction can be either a compound or an element. It depends on the specific reactants involved in the reaction. If a compound breaks down into simpler compounds or elements, the product will be a compound or element.
A single-replacement reaction
The reaction you are referring to is a single displacement reaction, also known as a single replacement reaction. In this type of reaction, an element replaces another element in a compound, resulting in a new compound and a different element being released.
Yes, that is correct. In a single displacement reaction, one element will displace another element in a compound if it is more reactive. This occurs when a more reactive element takes the place of a less reactive element in a compound, leading to the formation of a new compound and a different element being displaced.
A single-replacement reaction is a type of chemical reaction where an element replaces another element in a compound. This occurs when a more reactive element displaces a less reactive element from its compound, forming a new compound and releasing the displaced element.
ammonia and chlorine to form ammonium chlorine, 8NH3 + 3Cl2 ---> 6NH4Cl + N2
Single-displacement reaction
It is a compound. It represents a chemical reaction, which makes it a compound.
synthesis
During a single-displacement reaction, one element replaces another in a compound. This reaction is most likely to occur if a more reactive element displaces a less reactive element in the compound. The displacement reaction will result in the formation of a new compound and a free element.