Sovi.AI - AI Math Tutor

Scan to solve math questions

QUESTION IMAGE

ionization energy choose the element with the higher first ionization e…

Question

ionization energy
choose the element with the higher first ionization energy from each pair:
a. br or bi b. na or rb c. as or at d. p or sn

Explanation:

To solve for the element with the higher first ionization energy in each pair, we use the trend of ionization energy in the periodic table: ionization energy generally increases from left to right across a period and decreases from top to bottom within a group.

Part (a): Br or Bi

Step 1: Locate the elements in the periodic table

  • Bromine (Br) is in period 4, group 17.
  • Bismuth (Bi) is in period 6, group 15.

Step 2: Apply the ionization energy trend

  • Moving from left to right across a period, ionization energy increases. Moving down a group, ionization energy decreases.
  • Br is in a higher period (closer to the top) and further to the right in the periodic table compared to Bi. So, Br has a higher first ionization energy.
Part (b): Na or Rb

Step 1: Locate the elements in the periodic table

  • Sodium (Na) is in period 3, group 1.
  • Rubidium (Rb) is in period 5, group 1.

Step 2: Apply the ionization energy trend

  • Both elements are in group 1. As we move down a group, ionization energy decreases because the outermost electrons are further from the nucleus and experience less effective nuclear charge.
  • Na is above Rb in group 1, so Na has a higher first ionization energy.
Part (c): As or At

Step 1: Locate the elements in the periodic table

  • Arsenic (As) is in period 4, group 15.
  • Astatine (At) is in period 6, group 17.

Step 2: Apply the ionization energy trend

  • As is in a lower period (closer to the top) than At. Also, as we move down a group, ionization energy decreases. Even though At is in group 17 (to the right of group 15), the effect of being in a lower period (down the group) has a more significant impact on decreasing ionization energy. So, As has a higher first ionization energy.
Part (d): P or Sn

Step 1: Locate the elements in the periodic table

  • Phosphorus (P) is in period 3, group 15.
  • Tin (Sn) is in period 5, group 14.

Step 2: Apply the ionization energy trend

  • P is in a higher period (closer to the top) and further to the right (group 15 vs group 14 for Sn) in the periodic table.
  • Moving from left to right across a period, ionization energy increases, and moving up a group (decreasing period number) increases ionization energy. So, P has a higher first ionization energy.
Final Answers:

a. $\boldsymbol{\text{Br}}$
b. $\boldsymbol{\text{Na}}$
c. $\boldsymbol{\text{As}}$
d. $\boldsymbol{\text{P}}$

Answer:

To solve for the element with the higher first ionization energy in each pair, we use the trend of ionization energy in the periodic table: ionization energy generally increases from left to right across a period and decreases from top to bottom within a group.

Part (a): Br or Bi

Step 1: Locate the elements in the periodic table

  • Bromine (Br) is in period 4, group 17.
  • Bismuth (Bi) is in period 6, group 15.

Step 2: Apply the ionization energy trend

  • Moving from left to right across a period, ionization energy increases. Moving down a group, ionization energy decreases.
  • Br is in a higher period (closer to the top) and further to the right in the periodic table compared to Bi. So, Br has a higher first ionization energy.
Part (b): Na or Rb

Step 1: Locate the elements in the periodic table

  • Sodium (Na) is in period 3, group 1.
  • Rubidium (Rb) is in period 5, group 1.

Step 2: Apply the ionization energy trend

  • Both elements are in group 1. As we move down a group, ionization energy decreases because the outermost electrons are further from the nucleus and experience less effective nuclear charge.
  • Na is above Rb in group 1, so Na has a higher first ionization energy.
Part (c): As or At

Step 1: Locate the elements in the periodic table

  • Arsenic (As) is in period 4, group 15.
  • Astatine (At) is in period 6, group 17.

Step 2: Apply the ionization energy trend

  • As is in a lower period (closer to the top) than At. Also, as we move down a group, ionization energy decreases. Even though At is in group 17 (to the right of group 15), the effect of being in a lower period (down the group) has a more significant impact on decreasing ionization energy. So, As has a higher first ionization energy.
Part (d): P or Sn

Step 1: Locate the elements in the periodic table

  • Phosphorus (P) is in period 3, group 15.
  • Tin (Sn) is in period 5, group 14.

Step 2: Apply the ionization energy trend

  • P is in a higher period (closer to the top) and further to the right (group 15 vs group 14 for Sn) in the periodic table.
  • Moving from left to right across a period, ionization energy increases, and moving up a group (decreasing period number) increases ionization energy. So, P has a higher first ionization energy.
Final Answers:

a. $\boldsymbol{\text{Br}}$
b. $\boldsymbol{\text{Na}}$
c. $\boldsymbol{\text{As}}$
d. $\boldsymbol{\text{P}}$