CH2=CH2-CH-CH2-Br 1-butene, 3- OH, 4-Br
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OH
Not sure but would be my best bet
The products of the dehydration reaction between Na3PO4 and 12 H2O would be NaPO3 and 11 H2O molecules. Water (H2O) will be eliminated as a byproduct, leaving behind the dehydrated form of sodium phosphate, NaPO3.
In the reaction between hydrochloric acid (HCl) and sodium hydroxide (NaOH), the products formed are sodium chloride (NaCl) and water (H2O). This reaction is a classic example of a neutralization reaction, where an acid reacts with a base to produce a salt and water. The balanced equation for the reaction is HCl + NaOH → NaCl + H2O.
The products of a base (B-) reaction with water (H2O) are: the conjugate acid of the base (BH+) and a hydroxide ion (OH-) which causes the resulting solution to be basic (pH >7).
The reaction you've provided is a combustion reaction. In this reaction, methane (CH4) reacts with oxygen (O2) to form carbon dioxide (CO2) and water (H2O) as products.
The products of the reaction of PCl3 with water are HCl and H3PO3 (phosphorous acid). The balanced chemical equation for the reaction is: PCl3 + 3H2O → 3HCl + H3PO3
When BR2 reacts with H2O, it undergoes oxidation to form HBr and HOBr. This reaction involves the transfer of electrons from BR2 to H2O, resulting in the formation of these products.
Br2 + 3NaHSO3 = 2NaBr + NaHSO4 + H2O + 2SO2
When bromine reacts with water, it forms hydrobromic acid (HBr) and hypobromous acid (HOBr). The overall reaction can be represented as: Br2 + H2O → HBr + HOBr. This reaction is reversible and depends on the pH and conditions of the solution.
The chemical equation for the reaction between sulfur dioxide (SO2), bromine (Br2), and water (H2O) is: SO2 + Br2 + 2H2O -> H2SO4 + 2HBr
The reaction between Br2, NaOH, and H2O involves the formation of hypobromite ions (OBr-) and bromide ions (Br-) through a series of chemical reactions. Initially, Br2 reacts with NaOH to form NaOBr and NaBr. Then, NaOBr further reacts with water to produce hypobromite ions and hydroxide ions. Overall, the mechanism involves the oxidation of bromide ions to hypobromite ions in the presence of NaOH and water.
C6H10 + Br2 ➝ C6H10Br2The double bond within cyclohexene is broken and bromine is added.(check related link)
The products of the reaction between hydrochloric acid and solid sodium hydroxide are water and sodium chloride (NaCl). The balanced chemical equation for this reaction is: HCl + NaOH -> NaCl + H2O.
CaCl2 and H2O
The products of the dehydration reaction between Na3PO4 and 12 H2O would be NaPO3 and 11 H2O molecules. Water (H2O) will be eliminated as a byproduct, leaving behind the dehydrated form of sodium phosphate, NaPO3.
The reaction is: 2 H2O2 -------------2 H2O + O2 The hydrogen peroxide is the reactant; water and oxygen are the products.
No, H2O is the compound water and is not a reaction. However, it can be one of the products of a chemical reaction.
NaCl and H2O