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An element with atomic number 7 (nitrogen) can make a maximum of 3 covalent bonds, while an element with atomic number 16 (sulfur) can make a maximum of 2 covalent bonds. Therefore, when they combine, they can form a total of 5 covalent bonds between them.
There are 2 unpaired electrons in a sulfur atom with an atomic number of 16. Sulfur has 6 electrons in its outer shell, and 4 of them are used to form covalent bonds, leaving 2 unpaired electrons.
Sulfur can form both ionic and covalent bonds. In ionic bonds, sulfur tends to gain two electrons to achieve a stable octet configuration. In covalent bonds, sulfur often shares electrons with other nonmetals.
Sulphur has six valence electrons and hence it can form maximum of six covalent bonds as in SF6.
Yes, the bonds in sulfur dioxide are covalent.
Sulfur, with an atomic number of 16, can form a maximum of 2 covalent bonds. This is because sulfur has 6 valence electrons and can share these electrons with other atoms to complete its octet, leading to the formation of 2 covalent bonds.
An element with atomic number 7 (nitrogen) can make a maximum of 3 covalent bonds, while an element with atomic number 16 (sulfur) can make a maximum of 2 covalent bonds. Therefore, when they combine, they can form a total of 5 covalent bonds between them.
There are 2 unpaired electrons in a sulfur atom with an atomic number of 16. Sulfur has 6 electrons in its outer shell, and 4 of them are used to form covalent bonds, leaving 2 unpaired electrons.
Sulfur can form two covalent bonds as in H2S, and can form 6 as in SO3. In elemnatl allotropes of sulfur which are covalent bonded, many are cyclic compounds the number of covalent onds is 2.
Sulfur can form both ionic and covalent bonds. In ionic bonds, sulfur tends to gain two electrons to achieve a stable octet configuration. In covalent bonds, sulfur often shares electrons with other nonmetals.
Sulphur has six valence electrons and hence it can form maximum of six covalent bonds as in SF6.
Yes, the bonds in sulfur dioxide are covalent.
You haven't stated any bonds, you have just given a list of elements. Those elements can form various compounds, some having ionic bonds and some having covalent bonds. Uranium can also form metallic bonds.
Sulfur has covalent bonds with nonmetals.
Sulfur can form both ionic and covalent bonds depending on the elements it is bonding with. When sulfur bonds with a nonmetal, it forms a covalent bond by sharing electrons. When sulfur bonds with a metal, it typically forms an ionic bond by transferring electrons.
Yes, sulfur trioxide (SO3) is a covalent compound. It is composed of nonmetals (sulfur and oxygen) that share electrons to form covalent bonds.
Covalent bonds. Sulfur has a number of allotrpes the most common has 8 sulfur atoms covalently bonded together to form a puckered ring.