Tiny bits join to make things. 

A molecule is a group of tiny bits. 

A molecule is a group of two or more atoms. These atoms are held together by chemical bonds. A bond is a strong pull that keeps atoms together.
Some molecules use only one kind of atom. We call these homonuclear molecules. An example is oxygen. Other molecules use different kinds of atoms. These are called heteronuclear molecules. Water is one of these. It has two hydrogen atoms and one oxygen atom. 
Most things in life are made of molecules. This includes your food, sugars, and fats. Even DNA is a very large molecule. 
Many things on Earth are not made of molecules. Rocks, sand, and metals are not molecules. They are made of large networks of atoms. These are often called crystals. Molecules are also very tiny. Most are about one billionth of a meter wide. You cannot see them with your eyes. Scientists use special tools to see them. 
A molecule is a group of two or more atoms. These atoms are held together by attractive forces called chemical bonds. 
Most molecules stay together through covalent bonding. This happens when atoms share pairs of electrons. 
People have wondered about the tiny bits of matter for a long time. Greek philosophers like Leucippus and Democritus believed everything was made of atoms. Empedocles even thought of four elements: fire, earth, air, and water.
Science has changed a lot as we learned more about these bonds. In 1926, Jean Perrin won a Nobel Prize for proving molecules exist. He used his work on liquid systems and particle motion to show this. 
Most molecules are far too small to see with your eyes. Many are only a few billionths of a meter wide. 
A molecule is a group of two or more atoms held together by attractive forces. These forces are known as chemical bonds. Molecules are fundamental to our understanding of the physical world. They serve as the building blocks for organic substances and most of the living world. Depending on the scientific context, the term may also include polyatomic ions. In fields like quantum physics or biochemistry, scientists often use the word molecule to describe these charged groups.
The way atoms connect determines the type of molecule formed. One type is homonuclear, meaning it consists of atoms of only one chemical element. For example, an oxygen molecule (O2) is made of two oxygen atoms. Another type is heteronuclear, which is a compound made of more than one element. Water (H2O) is a heteronuclear molecule because it contains two hydrogen atoms and one oxygen atom. 
Most molecules are held together through a process called covalent bonding. In covalent bonding, atoms share pairs of electrons. These electron pairs are often called bonding pairs. This sharing creates a stable balance between attractive and repulsive forces. Some substances involve ionic bonding instead. This occurs when one atom transfers an electron to another. This creates an electrostatic attraction between oppositely charged ions, known as cations and anions. 
While bonding is common, not all bonded substances are molecules. Many familiar solids, such as salts, metals, and rocks, are not made of discrete molecules. Instead, they form large crystalline networks or unit-cellular structures. For instance, diamond and quartz are covalent crystals that extend in three-dimensional patterns. Metals use metallic bonding to create condensed phases. Even glasses, which are disordered solids, consist of atoms held by bonds without forming identifiable molecules. 
Our understanding of molecules has evolved over centuries. Ancient Greek philosophers like Leucippus and Democritus argued that the universe was made of atoms and voids. Empedocles suggested that matter was composed of four elements: fire, earth, air, and water. 
Modern molecular science was transformed by 20th-century physics. In 1926, Jean Perrin won the Nobel Prize for proving the existence of molecules. He used methods involving Brownian motion and liquid phase systems to reach this conclusion. 
Molecules vary greatly in size and importance. Most are far too small to see with the naked eye. Many building blocks for organic synthesis are only a few angstroms wide. An angstrom is about one billionth of a meter. However, some molecules are massive. These are called macromolecules or supermolecules. A famous example is DNA, a biopolymer that carries genetic information. 
The study of molecules is split into two main branches. Molecular chemistry examines the laws of how molecules interact to form or break bonds. Molecular physics focuses on the laws governing the structure and properties of the molecules themselves. Though the distinction is often vague, both fields are essential. They help us understand everything from the gases in our atmosphere to the proteins in our bodies. Molecules make up our food, vitamins, sugars, and fats, forming the very basis of life.
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