Pure water is neutral (pH 7) It may become acidic or alkaline depending what other substances are mixed.
CS2 is a polar covalent molecule that does not ionize in water, so it is not an acid or a base.
When a base accepts a hydrogen ion from an acid, it forms a water molecule. This process is known as neutralization, where the base and acid combine to produce water and a salt.
A water molecule can act as an acid when it donates a proton (H+) to another substance, such as a base. This results in the formation of a hydronium ion (H3O+).
When an acid and a base react, they typically form water and a salt. The water molecule is formed from the combination of the H+ ion from the acid and the OH- ion from the base. The remaining ions from the acid and base combine to form a salt.
When a Brønsted-Lowry acid dissolves in water, it donates a proton (H+) to a water molecule, forming its conjugate base. For example, when hydrochloric acid (HCl) donates a proton to a water molecule, it forms the chloride ion (Cl-) as its conjugate base.
CS2 is a polar covalent molecule that does not ionize in water, so it is not an acid or a base.
When a base accepts a hydrogen ion from an acid, it forms a water molecule. This process is known as neutralization, where the base and acid combine to produce water and a salt.
A water molecule can act as an acid when it donates a proton (H+) to another substance, such as a base. This results in the formation of a hydronium ion (H3O+).
When an acid and a base react, they typically form water and a salt. The water molecule is formed from the combination of the H+ ion from the acid and the OH- ion from the base. The remaining ions from the acid and base combine to form a salt.
When a Brønsted-Lowry acid dissolves in water, it donates a proton (H+) to a water molecule, forming its conjugate base. For example, when hydrochloric acid (HCl) donates a proton to a water molecule, it forms the chloride ion (Cl-) as its conjugate base.
HI is Hydrogen iodide. When it is dissolved in water, the solution is called hydroiodic acid or hydriodic acid.
The conjugate base for H2O is the hydroxide ion, OH-. When the hydroxide ion reacts with another water molecule, a hydrogen ion may be transferred, resulting in a water molecule and a hydroxide ion. Therefore, the conjugate base of water is OH-
The reaction is called neutralization. It involves the combination of an acid and a base to form a salt and water. The acid donates a proton (H+) to the base, resulting in the formation of a water molecule and a salt.
NO2 is not a base. It is a nitrogen dioxide molecule which can act as an acidic gas when dissolved in water, forming nitric acid.
It's not a base,it's an acid. CO2 in the air is actually neither a base or an acid. However, when it comes into contact with water it reacts to become H2CO3, which is an acid.
The conjugate pair for a strong base is water (H2O) and the hydroxide ion (OH-). When the strong base dissociates in water, it forms the hydroxide ion, and the water molecule acts as its conjugate acid.
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