KI + H2SO4 (concentrated) --> HI + KSO4
Balanced:H2 + I2 ----> 2 HI
Potassium iodide + silver nitrate --> Silver iodide and potassium nitrate The chemical equation is: K+I- (aq) + Ag+[NO3]- (aq) --> AgI (s) + K+[NO3]- (aq)
The formula for hydrogen iodide is HI.
Hydriodic acid. See the Related Link below.
The symbol for Hydrogen iodide is HI.
Balanced:H2 + I2 ----> 2 HI
hydrogen iode because of its 2hydrogen atoms
The balanced equation for the reaction between sodium (Na) and hydrogen iodide (HI) is: [ 2 \text{Na} + 2 \text{HI} \rightarrow 2 \text{NaI} + \text{H}_2 ] In this reaction, sodium displaces hydrogen from hydrogen iodide, producing sodium iodide (NaI) and hydrogen gas (H₂).
The balanced equation for the formation of silver iodide is: 2 AgNO3 + 2 KI → 2 AgI + 2 KNO3
The chemical equation for the reaction between ethyl iodide and aqueous potassium hydroxide is: C2H5I + KOH → C2H5OH + KI This reaction involves the substitution of the iodine in ethyl iodide with hydroxide from KOH, resulting in the formation of ethanol and potassium iodide.
Potassium iodide + silver nitrate --> Silver iodide and potassium nitrate The chemical equation is: K+I- (aq) + Ag+[NO3]- (aq) --> AgI (s) + K+[NO3]- (aq)
The balanced equation for the reaction between Iodine and Hydrogen is: H2 + I2 --> 2HI The ratio of I2 to HI is 1:2 Therefore 1 mole of Iodine can form a maximum of 2 moles of Hydrogen Iodide
The word equation for the formation of hydrogen gas is "Hydrogen gas is produced by the reaction of a metal with an acid."
The formula for hydrogen iodide is HI.
Hydriodic acid. See the Related Link below.
The symbol for Hydrogen iodide is HI.
hydrogen iodide (HI) is one of the strongest acids