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Question 15Write the full electron configuration for neon....

Question

Question 15Write the full electron configuration for neon.

Question 15 Write the full electron configuration for neon.



Answers

Write the electron configuration for an atom that has 13 electrons.

Threat the electron configuration for an Adam that has 33 electrons. Again, we'll start with the first energy level, which only contains one sub level. The s sub level two electrons can occupy it. Then we'll go to the second energy level, which has to sub levels and SNP to Congar Oh, into the S six can go into the P. Then we'll go to the third energy level, which has three sub levels. The three s is filled first, so to go through there and then we go to the P sub level where six can occupy it. And then as we're filling, as you recall, before we go to the three d, we go to the four s simply following the periodic table where two electrons could go, and then we finally feel the three D. Now we've added in 30 electrons, we only need three more. So then we go to the four p four p. Three. Sometimes you'll see it depending on what the preference of your teacher is to switch the order of these two and either way is appropriate, depending on what your teachers suggests.

Let's write the electron configuration for a Zen on core denoted with the elements in in in square brackets. So easy non core. Has the electron configuration want us to to us, too? Two P six. Three s to three p six. Three d 10 for us to four p six for D, 10 five s to and five p six, and there would be the electron.

At some electron configurations. So the arrangement of electrons and orbital's of the ground state atom is known as the electron configuration. So, firstly, we have helium hp that's simply want us to Thanks for having me on Want us to to us 22 p six, followed by argon. So we're just looking at noble gases is their full outer shells. Want us to to us 22 p. Six 323 p six. Lastly, we have crept on. Want us to to us 22 p 63 s to three peat. Six for us to three d 10. Well, peep six, okay.

Going to write out some electron configuration. So here we have sodium. The electron configuration here is one is to to us 22 p 63 s one. So if we were to form a stable configuration, have an A plus where we would have one. S +22 s +22 p six for enable gas configuration. In the next example, we have potassium That has the configuration one s to to us 22 p six three s, 23 p 64 s one. So if we wanted a stable configuration, we would have the plus one oxidation state want us to to us 22 p 632 three p six for that for outer shell. Next we have lithium lithium, That is one s 22 s one we have our I plus seconds is one s two. Next, we're taking a look at season and this is the last run this pot, de So we have the electron configuration. Want us to two s 22 p 63 s 23 p six. Four s 23 d 10. Four p six drive us to 40 10. 5 p 66 s one. So if we wanted a stable configuration, we just lose that electron from the 60 s orbital, it have one s 22 s 22 p 63 s 23 p six for us to three. D 10. 4 p six. Five s 24 d 10. 5 p six.


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