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potassium chloride

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Is KCl a compound and pure substance?

Yes, KCl (potassium chloride) is a compound because it is composed of potassium (K) and chloride (Cl) ions bonded together. It is also a pure substance because it is a single chemical substance with a definite composition.


What name would you give to the substance KCl?

Potassium Chloride


Is KCl a molecular or ionic substance?

KCl is an ionic substance. It is composed of potassium cations (K+) and chloride anions (Cl-) held together by ionic bonds, resulting in a crystal lattice structure.


Potassium chloride (KCl) is a compound formed when K transfers an electron to Cl. What kind of bond holds KCl together?

Potassium chloride (KCl) is a compound formed when K transfers an electron to Cl. What kind of bond holds KCl together?


Is KCl a solute or a solvent?

Potassium chloride does form an aqueous solution when dissolved in water.


Does KCl have a higher boiling point than CO2?

Yes, KCl (potassium chloride) has a much higher boiling point than CO2 (carbon dioxide). KCl boils at around 1420 degrees Celsius, while CO2 boils at -78.5 degrees Celsius at standard atmospheric pressure.


What kind of crystalline solid of KCl?

An Ionic Solid.Ionic solid


Is a salt substitute a mixture or pure substance?

Mixture


What kind of electrolyte used in salt bridge and why?

Kcl because of its high conductivity


Is KCl a mixture or pure substance?

Potassium is a metallic element and a member of the Alkali Metal group, it has the symbol K which is derived from its old name of Kalium.


How many moles of KCl are contained in 0.635L of 2.2M KCl?

moles KCl = ( M solution ) ( V solution in L )moles KCl = ( 2.2 mol KCl / L solution ) ( 0.635 L of solution )moles KCl = 1.397 moles KCl


What substance is most likely to exist as a crystalline solid at room temperature HI N2 NF3 KCl SO2?

KCl (potassium chloride) is most likely to exist as a crystalline solid at room temperature. Crystalline solids typically have a highly ordered atomic arrangement which allows them to form distinct crystal structures.