Q/ In a lecture demonstration, various ionic salts produced the different flame colors shown in the chart to the right. Based on these observations alone, electrons in which ionic salt underwent an orbital transition with the largest E? Explain/justify your answer.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Q/ In a lecture demonstration, various ionic salts produced the different
flame colors shown in the chart to the right. Based on these
observations alone, electrons in which ionic salt underwent an
orbital transition with the largest E? Explain/justify your answer.

 

 

The image shows a table with two columns. The left column lists chemical compounds, and the right column indicates corresponding colors. Here is the transcription:

| **Compound** | **Color**  |
|--------------|------------|
| B(OH)₃       | green      |
| BaCl₂        | yellow     |
| CsCl         | blue       |
| KCl          | purple     |
| LiNO₃        | red        |
| NaCl         | orange     |

This table can be used to illustrate the emission spectra or flame test colors of different chemical compounds for educational purposes. Each compound, when heated, may exhibit a unique flame color based on the metal cation present.
Transcribed Image Text:The image shows a table with two columns. The left column lists chemical compounds, and the right column indicates corresponding colors. Here is the transcription: | **Compound** | **Color** | |--------------|------------| | B(OH)₃ | green | | BaCl₂ | yellow | | CsCl | blue | | KCl | purple | | LiNO₃ | red | | NaCl | orange | This table can be used to illustrate the emission spectra or flame test colors of different chemical compounds for educational purposes. Each compound, when heated, may exhibit a unique flame color based on the metal cation present.
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Introduction

Wavelength is defined as the distance between two crests and two troughs. It is represented by .According to the Max Planck’s, “the energy of a photon is directly proportional to the frequency of that of photon of light.”

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