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It would take less energy to remove an electron from sodium than from chlorine because sodium has a lower ionization energy than chlorine. This means that sodium's outer electron is held less tightly compared to chlorine's outer electron.

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Is the ionisation energy of sodium same as chlorine?

No, the ionization energy of sodium is not the same as chlorine. The ionization energy of sodium is lower than that of chlorine because sodium requires less energy to remove an electron. Sodium has a single electron in its outer shell, while chlorine has seven electrons in its outer shell, making it harder to remove an electron.


Would it be most difficult to remove an electron from sodium aluminum sulfur or chlorine?

It would be most difficult to remove an electron from chlorine because it has the highest electron affinity among the elements mentioned. Sodium has the lowest ionization energy, meaning it's easiest to remove an electron from it.


What would be harder to remove an electron from sodium or chlorine?

It would be harder to remove an electron from chlorine because it has a higher electronegativity compared to sodium. This means that chlorine has a stronger pull on its electrons, making it more difficult to remove an electron.


What has a higher ionization energy between sodium and chlorine?

Chlorine has a higher ionization energy than sodium. This is because chlorine has a smaller atomic size and higher effective nuclear charge, making it more difficult to remove an electron compared to sodium.


Why is the ionization energy of cheorine is much higher than the ponization energy of sodium?

Chlorine has a higher ionization energy than sodium because chlorine has a smaller atomic size and higher effective nuclear charge, making it more difficult to remove an electron. Sodium, on the other hand, has a larger atomic size and lower effective nuclear charge, making it easier to remove an electron and requiring less energy.

Related Questions

Is the ionisation energy of sodium same as chlorine?

No, the ionization energy of sodium is not the same as chlorine. The ionization energy of sodium is lower than that of chlorine because sodium requires less energy to remove an electron. Sodium has a single electron in its outer shell, while chlorine has seven electrons in its outer shell, making it harder to remove an electron.


Would it be most difficult to remove an electron from sodium aluminum sulfur or chlorine?

It would be most difficult to remove an electron from chlorine because it has the highest electron affinity among the elements mentioned. Sodium has the lowest ionization energy, meaning it's easiest to remove an electron from it.


What would be harder to remove an electron from sodium or chlorine?

It would be harder to remove an electron from chlorine because it has a higher electronegativity compared to sodium. This means that chlorine has a stronger pull on its electrons, making it more difficult to remove an electron.


What has a higher ionization energy between sodium and chlorine?

Chlorine has a higher ionization energy than sodium. This is because chlorine has a smaller atomic size and higher effective nuclear charge, making it more difficult to remove an electron compared to sodium.


Sodium an alkali metal and chlorine a halogen are both in Period 3 of the periodic table Which element has a higher ionization energy?

Chlorine has a higher ionization energy than sodium. This is because chlorine, being a halogen, has a stronger electron affinity and is closer to achieving a stable electron configuration by gaining an electron, leading to a higher energy needed to remove an electron from its outer shell.


What elements has the greatest ionization energy Sodium Potassium Chlorine or Bromine?

Chlorine has the greatest ionization energy among these elements. This is because chlorine has the highest effective nuclear charge, making it more difficult to remove an electron from a chlorine atom compared to sodium, potassium, or bromine.


Why is the ionization energy of cheorine is much higher than the ponization energy of sodium?

Chlorine has a higher ionization energy than sodium because chlorine has a smaller atomic size and higher effective nuclear charge, making it more difficult to remove an electron. Sodium, on the other hand, has a larger atomic size and lower effective nuclear charge, making it easier to remove an electron and requiring less energy.


Do sodium and chlorine have the same number of electron energy levels?

Yes, sodium (Na) and chlorine (Cl) both have the same number of electron energy levels. In sodium, the first level has two, the second level has eight and the third level has one. In chlorine, the first level has two, the second level has eight and the third level has seven. They both have three electron energy levels.


Sodium and chlorine can bond together. Sodium gives chlorine a needed electron. What is chlorine's charge after accepting the electron?

-1


Why are sodium and chlorine more active elements?

Sodium and chlorine are more reactive elements because they have unfilled outer electron shells. Sodium has 1 electron in its outer shell and chlorine needs 1 electron to complete its outer shell. When they react, sodium donates its electron to chlorine, forming a stable ionic bond in the sodium chloride compound. This transfer of electrons releases energy, making the reaction very exothermic and giving these elements their high reactivity.


Why does sodium react with chlorine gas?

Sodium reacts with chlorine gas because sodium wants to donate its electron to chlorine to achieve a stable electron configuration, and chlorine wants to gain an electron to also become stable. This electron transfer results in the formation of ionic bonds between sodium and chlorine atoms, leading to the creation of sodium chloride (table salt).


Does sodium have a low or high ionization energy?

Sodium has a relatively low ionization energy, as it only requires a small amount of energy to remove an electron from a sodium atom. This is because sodium has one electron in its outermost shell, which makes it relatively easy to remove.