[Mg,Fe]2SiO4
The peridot gemstone primarily consists of the mineral olivine. It gets its distinctive green color from iron present in its chemical composition. Peridot can also contain trace elements such as nickel and chromium.
The chemical formula for peridot is (Mg, Fe)2SiO4. Peridot has an orthorhombic crystal structure, with the silicon and oxygen atoms arranged in a tetrahedral shape, surrounded by magnesium and iron atoms.
Peridot is a gem-quality variety of the mineral olivine. It is known for its vibrant green color, which comes from the presence of iron in its chemical composition. Peridot is commonly found in volcanic rocks and has been used in jewelry for centuries.
Peridot is composed of the mineral olivine, which is a silicate mineral made up of iron and magnesium. It has a molecular formula of (Mg,Fe)2SiO4. The vibrant green color of peridot is due to its iron content.
Peridot is a gemstone made of the mineral olivine, which is a silicate mineral composed of magnesium, iron, and oxygen. The green color of peridot is due to the presence of iron in its chemical structure.
The freezing point of peridot is not a standard property that is typically discussed. Peridot is a type of mineral belonging to the olivine group, and its freezing point would depend on the specific composition and impurities present in the sample. Generally, peridot is stable at high temperatures and is not used in applications where freezing point is a relevant factor.
The chemical composition remain unchanged.
Peridot is a gemstone composed of the mineral olivine. Olivine is a common mineral found in igneous rocks such as basalt and peridotite. So, while peridot itself is not an igneous rock, it is closely associated with igneous rocks due to its mineral composition.
2 Magnesium OR Iron atoms to 1 Silicon, 4 Oxygen atoms. A formula of (Mg, Fe)2 Si O4
Physical properties can be observed without changing the chemical composition of a substance. Chemical properties can only be observed by changing the chemical composition of the substance. In a physical change, the chemical composition of the substance does not change. In a chemical change, the chemical composition of the substance changes.
Yes, the composition of the rocks is as a result of the distinct chemical composition.
i think is chemical composition its not chemical composition, it's how they were formed