Sulfur is not flexible.
Sulfur is a solid element at room temperature and has a brittle texture, meaning it is not flexible in its pure form. However, sulfur can exist in a variety of compounds with different properties, some of which may exhibit flexibility.
Sulfur is a solid at room temperature and pressure and does not bend like flexible materials. However, sulfur can be melted and molded into different shapes when heated and becomes pliable like a liquid.
Both sulfur and sulfur dioxide molecules contain atoms of sulfur. However, sulfur is a diatomic molecule (S2) while sulfur dioxide is a triatomic molecule (SO2), consisting of one sulfur atom and two oxygen atoms. Additionally, both molecules have a distinct sulfur smell.
Sames as English - sulfur. Also spelled 'Sulpur.'
1 mol Sulfur is 32 g Sulfur So 2.5 mol Sulfur is 80 g Sulfur
Sulfur is a solid element at room temperature and has a brittle texture, meaning it is not flexible in its pure form. However, sulfur can exist in a variety of compounds with different properties, some of which may exhibit flexibility.
Sulfur is a solid at room temperature and pressure and does not bend like flexible materials. However, sulfur can be melted and molded into different shapes when heated and becomes pliable like a liquid.
Sulfur-32, Sulfur-33, Sulfur-34, Sulfur-36
Sulfur oxide can refer to both sulfur dioxide (SO2) and sulfur trioxide (SO3). The word equation for sulfur dioxide is sulfur + oxygen → sulfur dioxide. The word equation for sulfur trioxide is sulfur + oxygen → sulfur trioxide.
SCl4 is the chemical formula for sulfur tetrachloride.
The combustion of sulfur is called sulfur combustion or sulfur burning. When sulfur combusts, it reacts with oxygen to produce sulfur dioxide gas.
One if it is pure sulfur. Sulfur is an element so the on atom is sulfur!
Sulfur is a nonmetal. Sulfur is a solid.
The adjective form of "flexible" is "flexible."
Sulfur dioxide (SO2) consists of one sulfur atom and two oxygen atoms. The percentage of sulfur in sulfur dioxide is calculated as the mass of sulfur divided by the total mass of the compound, which is 32.07 grams per mole for sulfur and 64.07 grams per mole for sulfur dioxide. This means that sulfur represents 50% of the total mass of sulfur dioxide.
There are several allotropes of sulfur, with the most common ones being rhombic sulfur and monoclinic sulfur. Other allotropes include cyclo-sulfur and plastic sulfur.
S is the chemical formula for Sulfur.