4
Fluorine has a combining capacity of 1, as it can form one covalent bond by gaining an electron to achieve a full outer shell of 8 electrons.
Combining capacity for oxygen refers to the maximum amount of oxygen that can be bound to hemoglobin in the blood. It is influenced by factors such as the concentration of hemoglobin in the blood and the oxygen saturation level. This measurement is important in assessing the oxygen-carrying capacity of the blood.
The combining power of carbon is 4. This means that each carbon atom can form 4 bonds.
No, mass number is the number of neutrons and protons that exist within the nucleus of the atom for a particular element. It is based on the idea that most of the mass of an atom derives from the nucleus.
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valency
YES
Potassium ions have a combining capacity of +1 since they tend to form ionic compounds by losing one electron to achieve a stable electronic configuration. This makes them capable of combining with other ions that have a charge of -1 or with ions of higher positive charges to form a variety of compounds.
Fluorine has a combining capacity of 1, as it can form one covalent bond by gaining an electron to achieve a full outer shell of 8 electrons.
Combining capacity for oxygen refers to the maximum amount of oxygen that can be bound to hemoglobin in the blood. It is influenced by factors such as the concentration of hemoglobin in the blood and the oxygen saturation level. This measurement is important in assessing the oxygen-carrying capacity of the blood.
Carbon cannot be broken down. It is an element. When you burn carbon you get carbon dioxide, but that forms from combining carbon with oxygen.
The combining power of carbon is 4. This means that each carbon atom can form 4 bonds.
Calcium has a combining capacity of 2, meaning it typically forms chemical compounds by donating or sharing two electrons in chemical reactions.
Carbon and hydrogen
Carbon dioxide (CO2) and carbon monoxide (CO) are both formed by combining carbon and oxygen.
Yes Another answer: No. Combining capacity is related to the fill level of the atom's valence shell, while the charge has to do with the balance between protons and electrons. The two things are not the same.
Phosphorus combining capacity refers to the maximum amount of phosphorus that can be bound to proteins in a specific volume of serum or plasma. It is a measure of the ability of plasma proteins to bind and transport phosphorus in the bloodstream. A higher phosphorus combining capacity may indicate certain medical conditions such as kidney disease or metabolic disorders.