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Straighterline General Chemistry 1 LAB CHEM101L Lab 5 Electron Configuration COMPLETE Worksheet with LAB PHOTOS (New Version August 2024) Scored 100% $10.49   Add to cart

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Straighterline General Chemistry 1 LAB CHEM101L Lab 5 Electron Configuration COMPLETE Worksheet with LAB PHOTOS (New Version August 2024) Scored 100%

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Straighterline General Chemistry 1 LAB CHEM101L Lab 5 Electron Configuration COMPLETE Worksheet with LAB PHOTOS (New Version August 2024) Scored 100%

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  • August 21, 2024
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Lab 5 Electron Configuration CHEM101L

Straighterline Intro to Chemistry CHEM101L Lab 5 Electron Configuration COMPLETE Worksheet
with LAB PHOTOS (New Version August 2024) Scored 100%

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Lab Report Format Expectations
Utilize college level grammar and professional formatting when completing this worksheet.
Report all equations in a proper mathematical format, with the correct signs and symbols.

Pre-Lab Questions
1. What is an electron configuration? Provide a response in the context of energy levels.
Electron configuration is The placement of electrons within the energy levels or shells of an
atom. It shows the sorts of orbitals (s, p, d, and f) and the primary quantum number (n), which
represent the number of electrons occupying each energy level and sublevel. This notation aids
in the prediction of the bonding arrangements and chemical activity of an element.

2. Of the following colors, which would correspond to the highest energy photons (light) and which
would correspond to the lowest energy? red, orange, yellow, green, blue, indigo, violet
The lowest energy photons are represented by red light, and the highest energy photons are
represented by violet light.


EXPERIMENT 1: OBSERVING COLORS PRODUCED FROM VARIOUS METALS
Introduction Questions
1. In this experiment, you will conduct an experiment where atoms are heated with a flame. As the
atoms gain heat from the flame, different colors of light will be produced. What is causing this
light to be produced? Why are they different colors?
The excitation and relaxing of electrons within heated atoms cause them to emit light. This
phenomenon is known as flame heating. The relative energy differences between the electronic
energy levels in each atom are what cause this phenomenon to emit various colors of light.
Since every element has a distinct set of energy levels, distinct emission spectra are produced,
which can be used to determine which elements are present. As a result, the flame test's
observed colors act as a fingerprint for the components found in the sample.

2. Pick an element from the periodic table that shares a letter or two in common with the letters in
your name. State the element name, its symbol, and its electron configuration below.
sodium- Na (1s² 2s² 2p⁶ 3s¹)

3. What is the purpose of Step 6 in the experimental procedure?

, Lab 5 Electron Configuration CHEM101L

LiCl solution must be applied to the inoculating loop in order to observe the exact color
variations in the flame that LiCl causes.

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