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The combining capacity or potassium is +1.

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13y ago

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Which is the combining form for potassium?

The combining form for potassium is kal/i.


What is the combining ratio of potassium and bromine?

The combining ratio of potassium and bromine is 1:1, meaning that one atom of potassium combines with one atom of bromine to form potassium bromide (KBr).


How do you find the combining capacity?

valency


What is the combining ratio of potassium and bromine with iodine?

The combining ratio of potassium and iodine is 1:1, meaning one atom of potassium will combine with one atom of iodine. The combining ratio of bromine and iodine is 1:1 as well, indicating that one atom of bromine will combine with one atom of iodine.


What is the medical term meaning potassium?

kal/i combining form


Is bonding the combining capacity of elements?

YES


What is the combining capacity of fluorine?

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.


What is combining capacity for oxygen?

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.


Is potassium inert?

potassium is a metallic element which belong to the group one metal like sodium ,so therefore potassium can only be a donor by combining with maganese. It does not have full octet stucture on it outer most shell.


What is calcium's combining capacity?

Calcium has a combining capacity of 2, meaning it typically forms chemical compounds by donating or sharing two electrons in chemical reactions.


What is the name for the compound K3P?

K3P is the chemical formula. The name of this compound it potassium phosphide.


Is there a similarity between an atom's combining capacity number and the charge it has as an ion?

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.