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3. Analyze: What trend do you notice? __ 4. Investigate : Gather data for ionization energy across a period . Record in the table below. square square square square square square square square square square square square square square square square 5. Analyze: What trend do you notice? __ 6. Explore Examine other groups and periods in the periodic table to see if the same trends exist. What trends do you see in ionization energy down a group and across a period?

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3. Analyze: What trend do you notice? __
4. Investigate : Gather data for ionization energy across a period . Record in the table below.
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5. Analyze: What trend do you notice? __
6. Explore Examine other groups and periods in the periodic table to see if the same trends
exist. What trends do you see in ionization energy down a group and across a period?

3. Analyze: What trend do you notice? __ 4. Investigate : Gather data for ionization energy across a period . Record in the table below. square square square square square square square square square square square square square square square square 5. Analyze: What trend do you notice? __ 6. Explore Examine other groups and periods in the periodic table to see if the same trends exist. What trends do you see in ionization energy down a group and across a period?

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# Brief Explanations:<br />The questions are a mix of analysis and data collection related to the periodic trends in ionization energy. Ionization energy generally increases across a period due to increasing nuclear charge and decreases down a group due to increased atomic radius and electron shielding.<br /><br /># Answer:<br /><br />### 3. Analyze: What trend do you notice?<br /># Brief Explanations:<br />Ionization energy increases across a period from left to right due to increasing nuclear charge, which holds electrons more tightly.<br /><br /># Answer:<br />Ionization energy increases across a period.<br /><br />### 4. Investigate: Gather data for ionization energy across a period. Record in the table below.<br /># Brief Explanations:<br />Ionization energy values for the elements in Period 3 (Na to Ar) are collected from standard data sources.<br /><br /># Answer:<br />\begin{array}{|c|c|c|c|c|c|c|c|c|}<br\ />\hline\ Element\ &\ \ \mathrm{Na}\ \ &\ \ \mathrm{Mg}\ \ &\ \ \mathrm{Al}\ \ &\ \ \mathrm{Si}\ \ &\ \ \mathrm{P}\ \ &\ \ \mathrm{S}\ \ &\ \ \mathrm{Cl}\ \ &\ \ \mathrm{Ar}\ \ \\<br\ />\hline\ Distance\ (no\ units)\ &\ &\ &\ &\ &\ &\ &\ &\ \\<br\ />\hline\ Ionization\ energy\ (kJ/mol)\ &\ 496\ &\ 737\ &\ 577\ &\ 786\ &\ 1012\ &\ 1000\ &\ 1251\ &\ 1520\ \\<br\ />\hline<br\ />\end{array}<br /><br />### 5. Analyze: What trend do you notice?<br /># Brief Explanations:<br />The trend observed in the collected data shows a general increase in ionization energy across the period from sodium (Na) to argon (Ar).<br /><br /># Answer:<br />Ionization energy increases across the period from sodium to argon.<br /><br />### 6. Explore: Examine other groups and periods in the periodic table to see if the same trends exist. What trends do you see in ionization energy down a group and across a period?<br /># Brief Explanations:<br />Ionization energy decreases down a group due to increased atomic radius and electron shielding, and increases across a period due to increasing nuclear charge.<br /><br /># Answer:<br />Ionization energy decreases down a group and increases across a period.
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