If it was newly made, it would contain Cl2 molecules and Cl2. After silver nitrates were added, the Cl2 and Ag2 in the water would react to form AgCl2. The concentration of Cl2 in the water would decrease, causing the Cl2 in the water to dissolve in the water. The phenomenon was that the yellow-green color would fade away and a white deposit would be formed at the same time. If it wasn't newly produced, the water itself would be colorless, and there would be no " yellowish-green fading " phenomenon. Read more exciting novels for free
Under the condition of slight heating, silver nitrates and alcohol would undergo an oxido-reduction reaction: 2AgNO +CH CH ^O H = 2AG+CH CH ^O +HNO. The silver nitrates would continue to catalyze elemental silver, and then the silver ions would catalyze alcohol. The final result was that silver ions and nitrates were oxided, and alcohol was oxided to aldo. However, there was also a view that because the alcohol was very weak, the hydrogen ions it produced were very few and could not react with silver nitrates. There was no exact and unified description of the reaction between neutral alcohol and silver nitrates. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
When there is a small amount of thiodic acid, the reaction equation is: \(Ag^{+}+SCN^{-}=AgSCN\). The phenomenon is the formation of a white deposit. This deposit is not dissolved in dilute sulfuric acid, but is easily dissolved in the presence of hydrogen. When heated with concentrated sulfuric acid in a water bath, it will completely dissolve. When there was an excess amount of thianate, the reaction equation was: [AgSCN + NH4] SCN = NH4](AgSCN) 2]. The phenomenon was that the white deposit formed first dissolved and a colorless solution was obtained. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction of lead iodinate (PbI <2>) with silver nitrates (AgNO <2>) will produce silver iodinate (AgI) yellow precipitations and lead nitrates (Lead (NO <2>)<2>. The chemical equation of the reaction is: PbI + 2AgNO = 2AgI + Lead (NO). During the experiment, yellow precipitations could be observed in the solution. This was because the dissolution of silver iodinate was smaller than that of lead iodinate, and the reaction proceeded in the direction of producing more difficult to dissolve substances. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The silver nitrates solution contained <<Ag^+>>,<<NO3 ^->>,<<H^+>>, and <</>,<</> and <</>. According to the order of ion discharge, silver ions were discharged at the negative pole, and the hydrogen ions were discharged at the positive pole. The reaction of the two poles was: negative pole: <(Ag^++e^- = Ag'), positive pole: <(4Oh^--4e^- = 2H2O + O2'). The total reaction is: [4AgNO3 + 2H2O = energized = 4Ag4HNO3 + O2]. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction of bromic ether with silver nitrates in alcohol. In organic chemistry, the chemical properties of the aromatic compounds (such as bromic ether) were more active. Under certain conditions, the nitrogen atoms in the ether could react. The alcoholic solution of silver nitrates provided an environment for silver nitrates and alcohol. When it came into contact with bromic ether, due to the reaction activity of the tributyl alcohol, the Bromine atom would react with the silver ions in silver nitrates to form silver bromate. At the same time, other products would also be formed. This reaction was based on the chemical structure of the aromatic compounds and the ion activity of silver nitrates in alcoholic solutions. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction between Bromolene and silver nitrates could not directly produce a reaction to form a deposit. Because Bromoether was not an solute, there were no free Bromine ions. Bromine ions would only be produced when the bromic ether was first subjected to a water decomposition reaction (such as heating in a solution of NaOx) and then subjected to an acidic reaction (by adding diluted sulfuric acid). At this time, the bromic ions would react with silver nitrates to form silver bromate precipitations, and the main product was silver bromate precipitations. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
When iron reacted with a mixed solution of copper nitrates and silver nitrates, iron would react with silver nitrates first. If there was excess iron, it would react with copper nitrates. The reaction equation was: According to the metal activity order table, the stronger the metal, the stronger the oxidization of the positive ion, and the stronger the ability to replace the metal. According to the metal activity order, H, Fe3, Cu3, so the reaction between iron and copper nitrates is after the reaction between iron and silver nitrates. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Since I don't know the specific 'silver nitrate novel', I can't tell you the plot.
The reaction between silver nitrates and Na2SO4 will produce silver sulfuric acid, and the reaction equation is [2AgNO_{3}+Na_{2} SO4}= Ag2SO4}[downarrow+2NaNO_{3}]. In the identification reaction, the two substances were dissolved in water, and then the two solutions were mixed. If a white deposit appeared, it could prove that the reaction had occurred. The white deposit was silver sulfuric acid. This reaction could be used to identify the two compounds, silver nitrates and sulfur dioxide. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There may not be a very well - known novel specifically named 'silver nitrate novel' in a general sense. However, it could potentially be a very niche or self - published work. You might want to explore indie bookstores or online platforms for self - published books to see if you can find it.