Because they have fully filled outermost electronic configuration which is most stable & hence do not react easily. It reacts only with highly electronegative elements such as F & O. Mostly with XE.
Elements like gold, silver, and platinum are examples of matter that cannot be converted into simpler substances through ordinary chemical reactions. They consist of only one type of atom and cannot be broken down into simpler components by chemical means.
No, aluminum cannot be decomposed into simpler substances. It is an element with the atomic number 13 and cannot be broken down into simpler materials by ordinary chemical reactions.
Radioactivity is a nuclear process that involves the decay of an element's nucleus, not the rearrangement of its electrons in chemical reactions. The rate of nuclear decay is determined solely by the structure of the nucleus and is unaffected by external factors such as temperature or concentration that primarily influence chemical reactions.
Atoms cannot be divided by chemical reactions. Chemical reactions involve rearranging atoms to form new substances, but the atoms themselves remain unchanged. The only way to truly divide an atom is through nuclear reactions, which involve breaking apart the nucleus of an atom.
In a nuclear reaction, the nucleus of an atom undergoes a change. Common examples would be alpha decay, beta decay, fusion, and fusion. In each of those cases, different elements are formed in the process. This never happens in ordinary chemical reactions. In chemical reactions, it is the electrons that are involved , not the nucleus of the atom.
of course, by the intermediate of chemical reactions
chemical reactions....actually it is matter (mass)
Yes, elements can be changed into other elements through nuclear reactions rather than ordinary chemical reactions. In nuclear reactions, the nucleus of an atom is altered, leading to the creation of a different element. This process is not commonly seen in everyday chemical reactions.
It involves the particles of the nucleus (protons and neutrons), not the electrons.
The law of Conservation of Mass states that in ordinary chemical reactions, mass can not be created or destroyed.
Ordinary chemical means refer to the addition of heat, addition of electricity, and addition of electromagnetic radiation. These are called pyrolysis, electrolysis, and photolysis, respectively.
Elements like gold, silver, and platinum are examples of matter that cannot be converted into simpler substances through ordinary chemical reactions. They consist of only one type of atom and cannot be broken down into simpler components by chemical means.
Only those involved in nuclear reactions. Ordinary chemical reaction can not effect this change.
No, aluminum cannot be decomposed into simpler substances. It is an element with the atomic number 13 and cannot be broken down into simpler materials by ordinary chemical reactions.
Radioactivity is a nuclear process that involves the decay of an element's nucleus, not the rearrangement of its electrons in chemical reactions. The rate of nuclear decay is determined solely by the structure of the nucleus and is unaffected by external factors such as temperature or concentration that primarily influence chemical reactions.
Atoms cannot be divided by chemical reactions. Chemical reactions involve rearranging atoms to form new substances, but the atoms themselves remain unchanged. The only way to truly divide an atom is through nuclear reactions, which involve breaking apart the nucleus of an atom.
The law of Conservation of Mass states that in ordinary chemical reactions, mass can not be created or destroyed.