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Br0nsted-Lowry acid-base

This reaction is a proton transfer from HC1 to the C=0 group of acetaldehyde. Therefore, it is a Br0nsted-Lowry acid-base reaction, with HC1 acting as the acid (proton donor) and acetaldehyde acting as the base (proton acceptor). Before drawing any curved... [Pg.32]

Nylons are polyamides formed by step-growth polymerization. In Section 22.16A, we learned that nylon 6,6 can be prepared by the reaction of a diacid chloride and a diamine. Nylon 6,6 can also be prepared by heating adipic acid and 1,6-diaminohexane. A Br0nsted-Lowry acid-base reaction forms a diammonium salt, which loses H2O at high temperature. In both methods, each starting material has two identical functional groups. [Pg.1157]

Recall from Chapter 4 that this type of transfer of a proton from acid to H2O is a Br0nsted-Lowry acid-base reaction we discuss them in Chapter 18.)... [Pg.449]

A Br0nsted-Lowry acid-base reaction occurs when an acid and a base react to form their conjugate base and conjugate acid, respectively acid, -I- bas62 base, + acid ... [Pg.589]

A Br0nsted-Lowry acid-base reaction proceeds in the net direction in which a stronger acid and stronger base form a weaker acid and weaker base. Explain. [Pg.611]

When Fe " salts are dissolved in water, the solution becomes acidic due to formation of Fe(H20)50H and H30 . The overall process involves both Lewis and Br0nsted-Lowry acid-base reactions. Write the equations for the process. [Pg.613]

Clearly, the two reactions are analogous and demonstrate that the reaction between hydroxide ion and hydrogen bromide is simultaneously a Br0nsted-Lowry acid-base reaction and a Lewis acid/Lewis base reaction. Br0nsted-Lowry acid-base reactions constitute a subcategory of Lewis acid/Lewis base reactions. [Pg.46]

Write an equation for the Br0nsted-Lowry acid-base reaction that occurs when each of the following acids reacts with water. Show all unshared electron pairs and formal charges, and use curved arrows to track electron movement. [Pg.53]

The second stage is a Br0nsted-Lowry acid-base reaction and is fast. [Pg.333]

PROTON TRANSFER AND THE BR0NSTED-LOWRY ACID-BASE DEFINITION... [Pg.587]

Br0nsted-Lowry acid-base reactions of alkenes (Chapter 10, Sections 10.1 and 10.2)... [Pg.1028]

Note that Br0nsted-Lowry acid-base reactions (proton donor-proton acceptor reactions) are encompassed by the Lewis model. For example, the reaction between a proton and an ammonia molecule, that is. [Pg.694]

According to the Br0nsted-Lowry acid-base definition,... [Pg.588]

The Br0nsted-Lowry acid-base definition does not require that bases contain OH in their formula or that acid-base reactions occur in aqueous solution. [Pg.592]

Br0nsted-Lowry acid-base definition (588) proton donor (588) proton acceptor (588) conjugate acid-base pair (589) Section 18.4... [Pg.610]

The Bransted-Lowry Theory of Acids and Bases COAL 2 Given the equation for a Br0nsted-Lowry acid-base reaction, explain how or why it can be so classified. [Pg.523]

When writing the equation for a Br0nsted-Lowry acid-base reaction, transfer only one proton to get the correct conjugate acid and base on the opposite side of the equation. Once the equation is written, each conjugate acid-base pair has the acid on one side and the base on the other side. The acid and base on the same side of the equation are not a conjugate pair. [Pg.524]

Br0nsted-Lowry acid-base theory, proton-transfer reaction, proton source, proton remover, amphoteric... [Pg.524]

Theoretically, can there be a Br0nsted-Lowry acid-base reaction between OH and NHj If not, why not If yes, write the equation. [Pg.526]

An acid produces an H+ ion and a base yields an OH ion. 2. Br0nsted-Lowry (BL) and Arrhenius (AR) acids both yield protons they are the same. AR bases all have hydroxide ions to receive protons BL bases are anything that can receive protons. All AR bases are BL bases, but not all BL bases are AR bases. 3. The term/troton-irons/er reachon describes what happens in a Br0nsted-Lowry acid-base reaction. 4. Water can be a Lewis base because it has unshared electron pairs. It cannot be a Lewis acid because it has no vacant orbital to receive an electron pair from a Lewis base. [Pg.733]

A Br0nsted-Lowry acid-base reaction results in transfer of a proton from an acid to a base. These acid-base reactions, also called proton transfer reactions, are fnndamental to the study of organic chemistry. [Pg.56]

Br0nsted-Lowry acid-base reactions always result in the transfer of a proton from an acid to a base. [Pg.57]

Furthermore, when the snbstitntion product bears a positive charge and also contains a proton bonded to O or N, the initial snbstitntion prodnct readily loses a proton in a Br0nsted-Lowry acid-base reaction, forming a neutral product. [Pg.235]


See other pages where Br0nsted-Lowry acid-base is mentioned: [Pg.353]    [Pg.107]    [Pg.609]    [Pg.477]    [Pg.11]    [Pg.583]    [Pg.612]    [Pg.614]    [Pg.608]    [Pg.733]   
See also in sourсe #XX -- [ Pg.495 ]




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Acids and Bases The Br0nsted-Lowry Definition

Br0nsted

Br0nsted acid

Br0nsted acidity

Br0nsted base

Br0nsted-Lowry base

Br0nsted-Lowry definition of acids and bases

Properties of Lowry-Br0nsted acids and bases

Proton transfer Br0nsted-Lowry acid-base definition

The BR0NSTED-LOWRY ACID-BASE THEORY

The Br0nsted-Lowry theory conjugate acid-base pairs

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