what acid/base theory(s) occur in this reaction? a. arrhenius b. bronsted-lowery c.lewis d.Arrhenius,bronsted-lowery e.lewis,bronsted-lowery

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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what acid/base theory(s) occur in this reaction? a. arrhenius b. bronsted-lowery c.lewis d.Arrhenius,bronsted-lowery e.lewis,bronsted-lowery
The image depicts a chemical reaction illustrating the formation of a bond between two molecules. 

On the left, there's a molecule of NH₃ (ammonia) with fluorine atoms attached, represented as NF₃. This molecule has a lone pair of electrons on the nitrogen atom. Below it is a molecule of BH₃ (borane), with hydrogen atoms attached, represented in a pyramidal shape. 

An arrow points from the lone pair on nitrogen to the boron atom, indicating the direction of electron flow, leading to bond formation.

On the right, the result of the electron pair donation is shown: a dative (coordinate) covalent bond has been formed between nitrogen (N) and boron (B). This bond is represented by a line with a plus sign (+) near the nitrogen and a minus sign (−) near the boron, showing that NH₃ donates its electron pair to BH₃.

The diagram is a visual representation of a Lewis acid-base reaction, highlighting the transfer of an electron pair from a Lewis base (NF₃) to a Lewis acid (BH₃).
Transcribed Image Text:The image depicts a chemical reaction illustrating the formation of a bond between two molecules. On the left, there's a molecule of NH₃ (ammonia) with fluorine atoms attached, represented as NF₃. This molecule has a lone pair of electrons on the nitrogen atom. Below it is a molecule of BH₃ (borane), with hydrogen atoms attached, represented in a pyramidal shape. An arrow points from the lone pair on nitrogen to the boron atom, indicating the direction of electron flow, leading to bond formation. On the right, the result of the electron pair donation is shown: a dative (coordinate) covalent bond has been formed between nitrogen (N) and boron (B). This bond is represented by a line with a plus sign (+) near the nitrogen and a minus sign (−) near the boron, showing that NH₃ donates its electron pair to BH₃. The diagram is a visual representation of a Lewis acid-base reaction, highlighting the transfer of an electron pair from a Lewis base (NF₃) to a Lewis acid (BH₃).
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