The smallest particle of an element in chemistry is an atom. Atoms are made up of protons, neutrons, and electrons.
Carbon is the atom that differentiates organic chemistry from inorganic chemistry. Organic chemistry focuses on compounds containing carbon-hydrogen (C-H) bonds, while inorganic chemistry deals with compounds lacking these bonds.
In physics and chemistry, in the center of the atom.
The center of the atom is the nucleus formed from protons and neutrons.
An atom is the smallest particle that comprises a chemical element.Source:http://en.wikipedia.org/wiki/Atom
Reduction chemistry is the process of gaining electrons or decreasing the oxidation state of an atom or molecule. In chemical reactions, reduction occurs when a substance gains electrons, which leads to a decrease in its oxidation state. This process is essential in many reactions to balance the transfer of electrons and achieve chemical equilibrium.
when an any atoms want to achieved a state of nearest an inert atom, its gain electron
nuclear chemistry
The oxidation state of 5 is +5. In chemistry, oxidation states represent the number of electrons that an atom has gained or lost in a compound. In this case, an atom with an oxidation state of +5 has lost 5 electrons.
Is the direct displacement of atom or group of atom by atom or group of atom.
The smallest particle of an element in chemistry is an atom. Atoms are made up of protons, neutrons, and electrons.
Carbon is the atom that differentiates organic chemistry from inorganic chemistry. Organic chemistry focuses on compounds containing carbon-hydrogen (C-H) bonds, while inorganic chemistry deals with compounds lacking these bonds.
In physics and chemistry, in the center of the atom.
atom
In organic chemistry, a hydroxy group refers to an oxygen atom bonded to a hydrogen atom, while a hydroxyl group refers to an oxygen atom bonded to a carbon atom.
The first Fe represents an iron atom in the 0 oxidation state while the Fe in Fe2O3 represents iron ion in the +2 oxidation state
Yes, they usually are; being an isotope does not change the chemistry of the atom.