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Nh_4^+ +ho^(-) rarr nh_3(aq) + h_2o(l) for methanol, the acid base reaction would proceed. 2hno_ (3 (aq))+ca (oh)_ (2 (aq))rarrca (no_3)_ (2 (aq))+2h_2o_ ( (l)) this tells us that 2 moles of hno_3. The gas would interact … · c2h5cl has weak dipole-dipole forces from the c-cl bonds, but ch3-oh has strong hydrogen bonds. The viscosity of c2h5cl is 0. 279 mpa·s, while the viscosity of … · lithium is a group 1 metal and commonly forms a m + ion. · the nitrate and the natrium ions. · mg (oh)_2 now we know that hydroxides are salts of ho^-, and some metal ion. · could a buffered solution be made by mixing aqueous solutions of hcl and naoh? This tells you that you can expect the ph of the resulting solution to be … · the cyanate anions will react with water to form isocyanic acid, hnco, and hydroxide anions, oh−. Hydroxide anion, −oh, has a unit negative charge. The molarity of the acid is 1. 434. Thats a silly way to say carbon dioxide! 2ag^(+) + co_3^(2-) rarr … For ammonium we could write. · a good leaving group has to be able to part with its electrons easily enough, so typically, it must be a strong acid or weak base relative to other substituents on the same … Now if the parent metal has an electronic configuration of 2:8:2, then there are 12 electrons, … When they make music together, there is thus 1:1 stoichiometry … · these are ostensibly acid-base reactions. Na_2co_3(aq) + 2agno_3(aq) rarr ag_2co_3(s)darr + 2nano_3(aq) the net ionic equation is: Why isnt a mixture of a strong acid and its conjugate base considered a buffered … Start with the equation: Co_2(g)+ca(oh)_2(aq) rightleftharpoons ca^(2+)(aq)+h_2co_3(aq) may be wrong, but it seems reasonable.