The protonated form HCOOH is the acid and the deprotonated form HCOO- is the conjugate base. That is formic acid (HCOOH) and the formate ion (HCOO-) are a conjugate pair. In the same reaction, the water is the base (deprotonated) while H 3 O + (the protonated form) is the conjugate acid. The base here is the deprotonated form of the acid

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    Solution for The pKa of acetamide (CH3CONH2) is 16. Draw the structure for its conjugate base and explain why acetamide is less acidic than CH3COOH.

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    Whether we typically refer to a compound as an acid or base depends a great deal on the relative acid/base strength of the compounds (as will be seen later). But it is critical to realize that all acid base compounds are conjugate pairs from the Bronsted-Lowry perspective. For example, a simple acid is acetic acid CH3COOH In acid-base reactions, the acid donates a proton and the species that is left is its conjugate base. The base accepts a proton and the species formed is the conjugate acid. For a) HF loses a proton to H2O. HF becomes F- and H2O becomes H3O+ HF is the acid and its conjugate base is F-H2O is the base and its conjugate acid is H3O+

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