physical and chemical properties of silicon\nsilicon is a very versatile material and is classified as a…

physical and chemical properties of silicon\nsilicon is a very versatile material and is classified as a metalloid. it is used to make solar panels, computer chips, glass, and even used in making metal alloys.\nuse your understanding of physical and chemical properties and the placement of elements in the periodic table to make a claim about why silicon is classified as a metalloid.\nuse the claim - evidence - reasoning framework in your lab notebook to support your claim.\nmalleable/brittle: brittle in its pure form, but when mixed with certain elements, it is somewhat malleable.\nmelting point: 1414 °c\nconducts electricity: yes\nconducts heat: yes\nreacts with acids: no\nluster: shiny

physical and chemical properties of silicon\nsilicon is a very versatile material and is classified as a metalloid. it is used to make solar panels, computer chips, glass, and even used in making metal alloys.\nuse your understanding of physical and chemical properties and the placement of elements in the periodic table to make a claim about why silicon is classified as a metalloid.\nuse the claim - evidence - reasoning framework in your lab notebook to support your claim.\nmalleable/brittle: brittle in its pure form, but when mixed with certain elements, it is somewhat malleable.\nmelting point: 1414 °c\nconducts electricity: yes\nconducts heat: yes\nreacts with acids: no\nluster: shiny

Answer

Brief Explanations:

Silicon has properties of both metals and non - metals. It conducts electricity and heat like metals, has luster, but is brittle like non - metals in its pure form. Its position on the periodic table along the staircase line between metals and non - metals also indicates its metalloid nature.

Answer:

Silicon is classified as a metalloid because it has a combination of metallic and non - metallic properties and its position in the periodic table. It conducts electricity and heat and has luster (metallic properties), yet is brittle in its pure form (non - metallic property), and is located along the metal - non - metal dividing line in the periodic table.