Some metals are in a special group.
Some metals live in a special group.
Zinc and cadmium are solid metals. They are often a bluish-white color. Zinc is very important for living things. But cadmium and mercury can be toxic.
Mercury is a very special metal. It is the only metal that is liquid at room temperature.
These metals help us build things. They are used in many tools and electronics. They can also be mixed to make new metals.
It is neat to see how metals can be so different.
There is a special group of metals in the periodic table. This group is called Group 12. It has four members: zinc, cadmium, mercury, and copernicium.
Three of these metals are found in nature. Zinc, cadmium, and mercury are all used in electronics. They can also be mixed with other metals to make alloys. An alloy is a mix of two or more metals.
Zinc and cadmium are solid metals. They are often a bluish-white color. Zinc is very important for living things. However, cadmium and mercury are highly toxic. This means they can be poisonous. 
Mercury is very different from the others. It is a heavy, silvery metal. It is the only common metal that is a liquid at room temperature. Because it is a liquid, it can dissolve other metals. These special mixes are called amalgams.
Copernicium is the last metal in the group. It does not occur in nature. Scientists must make it in a lab. We do not yet know if it is a liquid or a gas.
In the periodic table, there is a special family called Group 12. This group contains four chemical elements: zinc, cadmium, mercury, and copernicium. 
These metals work in very different ways depending on their structure. Zinc and cadmium are solid metals that often look bluish-white. Zinc is very important for the health of living things. However, cadmium and mercury are highly toxic and can be poisonous. Mercury is the most unusual member of the group. It is a heavy, silvery-white metal that stays liquid at room temperature.
Scientists have studied these elements for a long time to understand them. Zinc is sometimes called spelter in nonscientific settings. Mercury has been used in many ways throughout history. Because it is a liquid, it can dissolve other metals to form amalgams. For example, mercury can mix with gold, silver, or sodium. People used to use iron flasks to trade mercury. This was because mercury would dissolve many other types of metal containers.
Each element in Group 12 has its own specific numbers and facts. Zinc has an atomic number of 30 and melts at 420 degrees Celsius. Cadmium has an atomic number of 48 and melts at 321 degrees Celsius. Mercury has an atomic number of 80 and has a very low melting point of -39 degrees Celsius.
You can see how these metals connect to the world around you. Zinc is used to make brass, which is an alloy of zinc and copper. Cadmium is often used as a protective layer on other metals to stop them from rusting. Even the planes you fly in are affected by these science rules. Mercury can form an amalgam with the aluminum in an aircraft. Because this can damage the plane, mercury is usually not allowed on aircraft. 
Group 12 is a specific family of chemical elements located in the periodic table. This group consists of four distinct elements: zinc (Zn), cadmium (Cd), mercury (Hg), and copernicium (Cn).
The physical properties of these elements are driven by their unique electron configurations. All group 12 elements are soft, divalent metals, meaning they typically form ions with a +2 charge. They are also diamagnetic, which means they are not attracted to magnetic fields. A key characteristic of this group is that they possess the lowest melting points of all transition metals. The way their electrons are arranged determines how they behave in different states of matter. For example, zinc and cadmium are solid metals under standard conditions. Mercury is unique because it is the only metal known to be liquid at room temperature.
Mercury’s liquid state is the result of complex quantum physics involving its electronic structure. In a mercury atom, electrons fill several subshells, including the 1s through 6s levels. The stability of the 6s shell is influenced by a filled 4f shell. This 4f shell does not provide effective screening of the nuclear charge. This phenomenon is known as the lanthanide contraction. Because the nucleus exerts a strong pull on the 6s electrons, the atom resists losing them. This makes mercury behave somewhat like a noble gas. Consequently, mercury atoms form very weak bonds with one another, which allows the metal to melt at an exceptionally low temperature of -39 °C (234 K).
Each member of the group has specific physical measurements that define it. Zinc is a bluish-white, lustrous metal with a density of 7.14 g/cm³. It has a melting point of 420 °C (693 K) and a boiling point of 907 °C (1180 K). Cadmium is also bluish-white and is described as soft, malleable, and ductile. It has a density of 8.65 g/cm³, a melting point of 321 °C (594 K), and a boiling point of 767 °C (1040 K). Mercury is a heavy, silvery-white liquid with a very high density of 13.534 g/cm³. Its boiling point is 357 °C (630 K). Finally, copernicium is predicted to have a density of 14.0 g/cm³ and a melting point of approximately 10 °C (283 K).
These elements are used extensively in industry and biology, though they have very different safety profiles. Zinc is essential to the biochemistry of living organisms. It is also used to create brass, which is an alloy of zinc and copper. Cadmium is highly toxic, but its resistance to corrosion makes it useful as a protective layer on other metals. It is also used in solder and bearing alloys due to its low coefficient of friction. Mercury is also highly toxic. Because it is a liquid, it can dissolve other metals to create mixtures called amalgams. 
The ability of mercury to form amalgams has significant real-world implications. For instance, mercury reacts readily with aluminum to form a mercury-aluminum amalgam. When this happens, the amalgam reacts with the air to produce aluminum oxide. This process can corrode aluminum parts quite easily. Because of this risk, mercury is generally not allowed aboard aircraft. This is to prevent accidental damage to the aluminum structures of the plane. Historically, because mercury could dissolve many metal containers, people used iron flasks to trade it. This was necessary because iron is one of the few metals that does not form an amalgam with mercury.
Group 12 elements also show interesting connections to other chemical groups. While they sit in the d-block, their d-electrons behave more like core electrons that do not participate in bonding. This makes them more similar to the alkaline earth metals of group 2, such as beryllium and magnesium. In fact, zinc and cadmium share similar atomic radii and electronegativities with these group 2 elements. However, the trends in group 12 are not as smooth as those in group 2. This is due to the effects of the d-block and lanthanide contractions. By studying these elements, scientists gain a deeper understanding of how electron shells and nuclear charges shape the physical world.
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