Question:

Element with atomic number 38 belongs to

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The electronic configuration of atomic number 38 is X (38) 1s2, 2s2,2p6, 3s2, 3p6, 4s2, 3d10, 4p6, 5s2 

Updated On: Jan 24, 2023
  • IIA group and 5th period.

  • IIA group and 2nd period.

  • VA group and 2nd period.

  • IIIA group and 5th period.

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The Correct Option is A

Approach Solution - 1

The electronic configuration of atomic number 38 is X (38) 1s2, 2s2,2p6, 3s2, 3p6, 4s2, 3d10, 4p6, 5s2 or 1s2, 2s2,2p6, 3s2, 3p6, 3d10, 4s2,4p6, 5s2.

Therefore, the element belongs to the IIA group and 5th period. The element is strontium (Sr).

Alternate Approach 1 - The correct option is A) IIA group and 5th period.

The explanation for the correct answer:

Option A: IIA group and 5th period.

Electronic Configuration of the element with atomic number 38

38X = 2, 8, 18, 8, 2

  1. To check the period of an element - count the number of shells in the configuration.
  2. To check the group - we can check the number of electrons in the valence shell.

From the above configuration,

  1. There is 5 shell in which the electron is filled. So, the element belongs to the 5th period.
  2. In the valence shell, only 2 electrons are present. So, the element belongs to group 2.
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Approach Solution -2

The explanation for incorrect options

Option B: IIA group and 2nd period.

  1. To be a member of 2nd period, the element must have only 2 shells. but the given configuration has 5 shells.

Option C: VA group and 2nd period.

  1. To be a member of the 2nd period, the element must have only 2 shells but the given configuration has 5 shells.
  2. The valence electron should be 5 to be a member of the VA group.

Option D: IIIA group and 5th period.

  1. The valence electron should be 3 to be a member of the IIIA group.

Hence, Option A is correct. The Electronic Configuration of the element with atomic number 38 is II A group and 5th period.

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Concepts Used:

Classification of Elements & Periodicity in Properties

Since many elements were being discovered in the 19th century and the study of these elements individually was proving difficult, classification of elements was made necessary.

Classification by Johann Dobereiner - German chemist Johann Dobereiner classified certain elements on the basis of their similar properties in the groups of continuing - three elements each. These groups were called ‘triads’. In every triad, the atomic weight of the middle element was equal to the average of the atomic weights of the first and third elements. 

Newlands Law of Octaves - The elements were arranged in increasing order of their atomic weights and found that every 8th element shows similarity with the 1st element. 

Mendeleev’s Periodic Table - The arrangement of all 63 elements in rows or columns in order of their atomic weight was made by Mendeleev. He left some space for corresponding elements in his periodic table which were not even discovered till then. Although he predicted the properties of those elements through his periodic classification of elements. 

Modern Periodic Law - The properties of the elements of the modern periodic law are periodic functions of their atomic numbers.