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Katarina [22]
3 years ago
14

Which model correctly describes the locations of protons and electrons in the wave mechanical model of the atom?

Chemistry
2 answers:
masya89 [10]3 years ago
5 0
The model correctly describes the locations of protons and electrons in the wave mechanical model of the atom is the <span>proton in nucleas, electron in regions of most probable location. 

Thank you for posting your question here at brainly. I hope the answer will help you. </span>
uranmaximum [27]3 years ago
3 0
<h2>Answer:</h2>

In the Bohr model, the electron was supposed to flow in circular orbits. In the wave mechanical model, on the other hand, the electron positions are described by orbitals. Orbitals are not like orbits. In the wave mechanical model of an atom, the location of protons is inside the nucleus, however electrons are present in the most probable location.

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A. Gallium is produced by the electrolysis of a solution obtained by dissolving gallium oxide in concentrated NaOH(aq). Calculat
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Answer:

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Explanation:

To calculate the total charge, we use the equation:

C=I\times t

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C = Charge

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To calculate the moles of electrons, we use the equation:

\text{Moles of electrons}=\frac{C}{F}

where,

F = Faraday's constant = 96500

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Ga^{3+}(aq.)+3e^-\rightarrow Ga(s)

I = 0.790 A, t = 30.0 min = 1800 seconds

C=I\times t

C=0.790 A\times 1800 s=1422 C

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\text{Moles of Gallium}=\frac{\text{Moles of electrons}}{n}

n = number of electrons transferred = 3

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B) The equation for the deposition of Sn(s) from Sn(II) solution follows:

Sn^{2+}(aq.)+2e^-\rightarrow Sn(s)

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n = number of electrons transferred = 2

\text{Moles of tin}=\frac{\text{Moles of electrons}}{n}

Moles of electron =  n\times \text{Moles of tin}

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\text{Moles of electrons}=\frac{C}{F}

C=96500 F\times 0.14622 mol=14,110.23 C

Current applied for t time = I = 5.79 A

t=\frac{C}{I}=\frac{14,110.23 C}{5.79 A}=2,437 s=0.67 hrs

For 0.67 hours current of 5.79 A must to be applied to plate out 8.70 g of tin.

5 0
4 years ago
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tester [92]

Answer:

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Explanation:

Hello,

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