The chemical equation for the reaction of aluminum ($KA1 (SO4) 2·12H2O $) with NaHCO3 $is: $2KA1 (SO4) 2·12H2O +6NaHCO3 = K2SO4 + 3Na2SO4 + 2A1 (SH) 3 → +6CO2 → +24H2O $, and the ion equation is: $A1 ^{3+} +3HCO3 ^- = A1 (SH) 3 → +3CO2 → $. Read more exciting novels for free
The chemical equation of the reaction between the two substances is: NaCl2 (aq) + H2O(l). In the reaction, the two substances react in water to form a solution of NaClCl2 and water. In terms of reaction conditions, the reaction temperature was usually at room temperature (20 - 25 ° C), the concentration of the reagents was usually 10% - 20%, and the reaction time was usually 30 - 60 minutes. However, it was important to note that in the chemical equation, the same ions often could not react with new substances. From the reaction equation, the original substance was still produced, so the reaction was not obvious. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There was no obvious reaction between the two. Because the solution itself was a neutral and slightly acidic solution, there would be neither the precipitations of the chloride-like substances nor the dissolving of the partially dehydrated aluminum trioxide-like substances after the addition of the solution. Alum was a salt-like substance of an organic substance, and so was the solution of the chloride-like substances. Therefore, the two could not react. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
In cold water, the dissolution of the aluminum was limited. In warm water, due to the decomposition, the aluminum would be separated and form aluminum trioxides. The aluminum trioxides had a strong absorption effect (because it was charged), which would absorb impurities in the water such as iron ions to form larger molecular clusters. The molecular clusters would become yellow, and the molecular clusters would become larger and larger. Finally, they would sink to the bottom, and the water would become clean. In addition, if you add aluminum to turbid natural water, stir and dissolve it, and then let it stand, it will produce settling. This is because the colloid substance formed by aluminum dissolving in water has an absorption effect on impurities, causing impurities to settle. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Fe2 + I2 = heating = FeI2 <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There were different opinions on whether or not the reaction between the two substances occurred. One view was that silver chloride-soda would react to produce silver-white silver silver precipitations and NaCl2, and the silver-white precipitations could easily be converted to brown silver oxide-soda. The other view was that the reaction could not be carried out because the reaction between base and salt required the salt to be dissolved, while AgCl2 was difficult to dissolve. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Alum was used to purify water because the colloid formed after the aluminum was dissolved in water had an absorption effect on impurities, which could cause impurities to settle and achieve the effect of purifying water. Ferrate water purification was produced by the decomposition of ferrate ions, which produced iron ions. Iron ions were used as sorcerers to absorb various negative and positive ions, which played a very good role in water purification. In the process of drinking water treatment, the comprehensive performance of the eight characteristics of fermentation, absorption, coagulation, settlement, sterilization, disinfection, color removal and odor removal was a new type of non-chloride-based high-efficiency water treatment agent. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
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>
Cardin's formula was a formula used to solve cubic equations. It could solve any type of cubic equation and was the universal formula for such equations. The process of solving Cardin's formula mainly included the following steps: 1. The cubic equation to be solved was converted into the standard form, which was in the form of x^3 +px+q=0. 2. By performing a variable substitution, the unknown x was replaced with a new variable y, so that the equation became y^3 +py+q=0. 3. Using Cardin's formula, he calculated the three solutions of y according to the equations 'p and q. 4. Substitute the three solutions of y back to the variable x to obtain the three solutions of the original equation. It should be noted that the process of solving Cardin's formula may involve complex numbers, so the solution may include real numbers and complex numbers. In addition, the calculation process of Cardin's formula might be rather complicated, requiring multiple replacements and calculations. In short, the Cardin formula was a general formula for solving cubic equations. Through variable substitution and calculation, three solutions could be obtained.
The reaction equation is: 2NaHSO2 + 2CH CH2Ox = Na SO2 +H SO2 + 2CH CH2Ox. The phenomenon of this reaction was not mentioned in the information provided, 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>
There was no reaction between the saturated solution of NaCl2 and the solution of NaOx. This was because it did not meet the conditions for a metathesis reaction (forming a deposit, gas, or water). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>