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44 x In a metal, the DELOCALISED electrons have the ability to (1)-throughout the metal so their ELECTROSTATIC effect is (2) between the structure. 1: remain in a set position; 2: shared square square 1: remain in a set position; 2: centralised

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44 x
In a metal, the DELOCALISED electrons have the ability to (1)-throughout the metal so their
ELECTROSTATIC effect is (2) between the structure.
1: remain in a set position; 2: shared
square 
square 
1: remain in a set position; 2: centralised

44 x In a metal, the DELOCALISED electrons have the ability to (1)-throughout the metal so their ELECTROSTATIC effect is (2) between the structure. 1: remain in a set position; 2: shared square square 1: remain in a set position; 2: centralised

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WrenElite · Tutor for 8 years

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1: move; 2: shared

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## Step 1: Understanding the question<br />The question is asking about the properties of delocalised electrons in a metal. Delocalised electrons are not fixed to a particular atom but are free to move throughout the metal. This is a key feature of metallic bonding and is responsible for many of the properties of metals, such as their ability to conduct electricity and heat.<br /><br />## Step 2: Identifying the correct answer<br />Given the nature of delocalised electrons, they do not remain in a set position but move throughout the metal. Therefore, options 1 and 4 can be eliminated. <br /><br />As for the electrostatic effect of these electrons, it is not centralised in one location but is shared throughout the metal, contributing to the metallic bond that holds the atoms together. Therefore, the correct answer is that delocalised electrons move throughout the metal and their electrostatic effect is shared.
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