Photo AI
Question 5
This question is about magnesium and magnesium chloride. Magnesium chloride contains magnesium ions (Mg<sup>2+</sup>) and chloride ions (Cl<sup>-</sup>). Describe, ... show full transcript
Step 1
Answer
When a magnesium atom reacts with chlorine atoms, it loses two electrons to achieve a stable noble gas electron configuration. Consequently, each chlorine atom gains one electron. This exchange of electrons forms magnesium ions (Mg<sup>2+</sup>) and chloride ions (Cl<sup>-</sup>). The magnesium atom thus transforms into a magnesium ion, while the chlorine atoms become chloride ions, resulting in the formation of magnesium chloride (MgCl<sub>2</sub>).
Step 2
Answer
Magnesium chloride must be either molten or dissolved in water because, in solid form, the ions are held in a fixed lattice structure and cannot move freely. When melted or dissolved, the ions are free to move, allowing them to carry electric charge and conduct electricity required for the electrolysis process.
Step 3
Answer
At the negative electrode, magnesium ions (Mg<sup>2+</sup>) are attracted due to the electrolysis process. As these positively charged ions approach the negative electrode, they gain electrons and are reduced. Specifically, each magnesium ion gains two electrons, converting it back into elemental magnesium. The half-reaction can be represented as:
Step 4
Step 5
Answer
Magnesium is not produced at the negative electrode in Experiment 2 because hydrogen ions (H<sup>+</sup>) from the water are more readily reduced than magnesium ions. Since hydrogen is higher in the activity series, it takes precedence, leading to the generation of hydrogen gas instead of magnesium.
Step 6
Step 7
Answer
Metals can be bent and shaped due to the presence of metallic bonding, which allows layers of atoms to slide over each other without breaking the metallic structure. The delocalized electrons in metals give them the ability to conduct electricity and maintain structural integrity while allowing flexibility, enabling metals to be easily molded into various shapes.
Report Improved Results
Recommend to friends
Students Supported
Questions answered