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the first two columns in LHS contains the element which their s orbital has one or two electrons. the last six coulmns is for p orbital. the columns between them is, i think, for d and the rows below the table is for f orbitals. i'm not sure about the f and d orbitals.

2006-08-11 20:07:47 · answer #1 · answered by ___ 4 · 0 0

The S orbitals are the first 2 columns of the periodic table. (Periods I and II). The D orbitals are in every element past element 18. They are represented in the "valley" of the periodic table. Theres a lot more to it than just this, but hope this helps you understand a lil bit. =)

2006-08-11 21:53:21 · answer #2 · answered by Phillip R 4 · 0 0

s - orbital is present in all the elements of the periodic table. it's the primary orbital and can have two electrons with opposite spins. then eventually the p,d and f orbitals get filled up respectively. this is as per auf-bau principle which states no two electrons can have the identical set of quantum numbers. to simplify u can find d- orbitals for transition and inner transition elements.

2006-08-11 20:53:13 · answer #3 · answered by saurabh k 2 · 0 0

You can find the first 1s orbital block in period 1 of the table, the columns going down.
You can find the first 1d orbital block in period 4 and above.

2006-08-11 20:05:01 · answer #4 · answered by cehelp 5 · 0 0

s and d are sub-shells of the shells which electrons orbit, and hence is not directly listed on the Periodic Table. Taking the first shell (K), it can hold 2 electrons, and have subshell s. L (2nd shell) on the other hand, can hold eight. Since s can only hold 2, it has s and p as its subshell.

s: 2 electron
p: 6 electron
d: 10 electron
f: 14 electrons

2006-08-11 19:57:31 · answer #5 · answered by Anonymous · 0 0

s orbitals block consist of the alkali metals and the alkaline earth metals,i.e., the first two groups in the periodic table.
the d orbital block consists of the transition metals , i.e. frm group 3rd to 12th.
note:lanthanides and actinides are not included in either of them. they r a part of f orbital block present in the bottom of the periodic table

2006-08-11 20:13:46 · answer #6 · answered by Anonymous · 0 0

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2016-12-11 07:22:58 · answer #7 · answered by Anonymous · 0 0

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