Which statement is true?

1. The electronegative nature of elements increases along the period

2. The electropositive nature of elements increases along the period

3. The chemical reactivity of elements increases along the period

4. The I.E  of element decreases along the period

Subtopic:  Ionization Energy (IE) |
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Which of the electronic configuration of an atom has the lowest ionization enthalpy? 

1. 1s2,2s22p5

2. 1s2,2s22p3

3. 1s2,2s22p6,3s1

4. 1s2,2s22p6

Subtopic:  Ionization Energy (IE) |
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Amongst the following electronic configurations, the highest ionization energy
is represented by:

1. [Ne]3s23p3

2. [Ne]3s23p2

3. [Ar]3d104s24p3

4. [Ne]3s23p1

Subtopic:  Ionization Energy (IE) |
 68%
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Element that has the greatest tendency to lose an electron is :

1. F 2. Fr
3. S 4. Be
Subtopic:  Ionization Energy (IE) |
 62%
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In the long form of periodic table, the elements having lowest ionization potential are placed in:

1. I group

2. IV group

3. VII group

4. Zero group

Subtopic:  Ionization Energy (IE) |
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Four successive members of the first-row transition elements are listed below with their atomic numbers. Which one of them is expected to have the highest third ionisation enthalpy?

1. Vanadium (Z = 23)

2. Chromium (Z = 24)

3. Iron (Z = 26)

4. Manganese (Z = 25)

Subtopic:  Ionization Energy (IE) |
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The correct order of second ionization potential of carbon, nitrogen, oxygen and fluorine is

1. C > N > O > F

2. O > N > F > C

3. O > F > N > C

4. F > O > N > C

Subtopic:  Ionization Energy (IE) |
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Generally, the ionization enthalpy increases along a period but there are some exceptions. The one which is not an exception is-

1. Be and B

2. N and O

3. Mg and Al

4. Na and Mg

Subtopic:  Ionization Energy (IE) |
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The First ionisation enthalpies of Na,Mg,Al and Si are in the order

1. Na<Mg>Al<Si

2. Na>Mg>Al>Si

3. Na<Mg<Al<Si

4. Na>Mg>Al<Si

Subtopic:  Ionization Energy (IE) |
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Which one of the elements has the highest ionization energy?

1. [Ne]3s23p1

2. [Ne]3s23p2

3. [Ne]3s23p3

4. [Ar]3d104s24p2

 

Subtopic:  Ionization Energy (IE) |
 87%
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