You and your team work at a scientific research facility that is working towards creating the newest and best batteries for cell phones. Last week, you were told you have a new boss. Your new boss has a science background but he hears that beryllium (Be) is much cheaper than lithium. Your team does not think that switching to beryllium in batteries is a good idea. You have a meeting coming up with him. You plan to convince him that lithium is a better choice than beryllium for creating lightweight, and energy efficient batteries. Use your knowledge of periodic trends to create a slide with your team to present to him! Use the following concepts and terms in your argument:  ionization energy, Does Li or Be have a greater ionization energy? Why does this matter?     atomic mass Does Li or Be have a greater atomic mass?   Why does this matter?       Conclusion :

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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You and your team work at a scientific research facility that is working towards creating the newest and best batteries for cell phones. Last week, you were told you have a new boss. Your new boss has a science background but he hears that beryllium (Be) is much cheaper than lithium. Your team does not think that switching to beryllium in batteries is a good idea. You have a meeting coming up with him. You plan to convince him that lithium is a better choice than beryllium for creating lightweight, and energy efficient batteries. Use your knowledge of periodic trends to create a slide with your team to present to him! Use the following concepts and terms in your argument: 

ionization energy,

Does Li or Be have a greater ionization energy?

Why does this matter?  

 

atomic mass

Does Li or Be have a greater atomic mass?

 

Why does this matter?  

 

 

Conclusion : 

 

 

 

Expert Solution
Step 1

The electronic configurations of Li and Be are:

Li = 1s2 2s1

Be = 1s2 2s2

 

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