The ion equation of the reaction between dilute acetic-acid and koh is: (CH3COON + Ox ^- = CH3COO ^- + H2O). Read more exciting novels for free
The reaction equation of NaHCO3 and NaHCO3 is: CH3COON + NaHCO3 ==H2O+CO2 ^+ CH3COONa. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
When the reaction between the two occurred, a neutralizing reaction would occur. Since this was a reaction between an acid and a base, water and a salt such as salt, which was known as NaAcetic acid, would be formed during the reaction. The reaction was not obvious, and there were no special phenomena such as precipitations, gas generation, or color changes. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Acetic acid, CH3COON, did not react with the aminium chloride-NH4C1, and there was no reaction equation. Because the acetic-acid CH3COON was a weak acid, it did not meet the conditions for the metathesis reaction, nor did it meet the conditions for the oxido-reduction reaction. CH3COO- + NH4+ + H2O ⇌ CH3COOH + NH3·H2O <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction between the two was an ion reaction. Because the chemical equation of the reaction between the dilute sulfuric acid and the dilute sulfuric acid is [Z +2HC1 = ZnCl2 + H ^], the ion equation is [Z +2H = Zn2 + H ^]. There are ions involved in the reaction, so it is an ion reaction. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The chemical equation of the reaction between iron and dilute sulfuric acid was: FeSO2 = FeSO2 + H2. The reaction rate was affected by many factors, such as the concentration of the reagent, temperature, the surface area of the iron, and the presence of a catalyst. However, there was no specific equation called the " reaction rate equation of iron and dilute sulfuric acid " to describe the reaction rate. From the perspective of reaction rate theory, according to the effective collision theory, the reaction rate was related to the frequency of effective collisions between activated molecules. " For example, when the concentration increases, the number of molecules of the reagent in the unit volume increases, and the number of activated molecules also increases correspondingly. The effective collision frequency increases, and the reaction rate increases. When the temperature increases, the speed of the molecular movement increases, and the percentage of activated molecules increases. The effective collision frequency increases, and the reaction rate increases. The surface area of the solid iron increases, and the chances of contact between the reagents increase, and the reaction rate also increases. If there was a catalyst involved, the activation energy of the reaction could be reduced, allowing more molecules to become activated molecules, increasing the effective collision frequency and accelerating the reaction rate. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction of sulfuric acid and potassium under the catalyst of phosphorus can produce bromacetin, and the reaction equation is: \[ \begin{align*} &3CH3COON +2Br2 + P <3CH2BrCOON + H3PO3> &CH2BrCOH + Br2 + P <<<p>> CH2BrCOBr2 + H3PO3></p> \end{align*} \] There was no mention of this reaction in the information, so it was impossible to give an accurate answer. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The ion equation of the reaction between the reagent and the acid would vary depending on the type of acid. Using sulfuric acid as an example: Borax will react with water: $Na2B4O7 + 7H2O = 2Na^+++4H3BO3 + 20H ^ -$. When it reacted with sulfuric acid,$Oh^ -$would react with $H^+$, and the total ion equation was: $B4O7 ^{2 -}+2H ^+++5H2O = 4H3BO3 $. Borax reacted with acid to form Boric acid ($H3BO3 $). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The chemical equation of the reaction between aceticacid (CH3COON) and NaHCO3 (NaHCO3) is (CH3COON + NaHCO3 = H2O + CO2 ^+ CH3COONa), which is a metathesis reaction. The basis of judgment was that the metathesis reaction was a reaction in which two compounds exchanged their components to form two other compounds. In this reaction, the hydrogen ion (H^+) in the acetic-acid and the hydrogen ion in the hydrogen carbonate-acid react with each other. The combination of HCO3 ^-formed carbolic acid (H2CO3), which was unstable and decomposed into carbon dioxide (CO2) and water (H2O). The combination of acetate-ion (CH3COO ^-) and sodium-ion (Na^+) formed sodium acetate-ion (CH3COONa), which met the definition of metathesis reaction. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction of the two reagents was a metathesis reaction. In this reaction, the hydrogen ion (H^+) in the acetic-acid (CH3COON) and the hydrogen ion (HCO3 ^-) in the hydrogen carbonate-NaHCO3 exchange to form water (H2O), carbon dioxide (CO2), and the hydrogen ion (CH3COONa). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction between the two could not be explained, as the reaction between the two was almost non-existent. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>