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DELOCALISED electrons within metals are (1)-, allowing them to carry a... (2)... which means that they conduct electricity. 1: locked in a new position compared to their original; 2: voltage 1: locked in a new position compared to their original; 2: charge 1: free to move ; 2: voltage 1: free to move 2: charge

Question

DELOCALISED electrons within metals are (1)-, allowing them
to carry a... (2)...  which means that they conduct electricity.
1: locked in a new position compared to
their original; 2: voltage
1: locked in a new position compared to
their original; 2: charge
1: free to move ; 2: voltage
1: free to move 2: charge

DELOCALISED electrons within metals are (1)-, allowing them to carry a... (2)... which means that they conduct electricity. 1: locked in a new position compared to their original; 2: voltage 1: locked in a new position compared to their original; 2: charge 1: free to move ; 2: voltage 1: free to move 2: charge

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PerynExpert · Tutor for 3 years

Answer

Delocalized electrons within metals are "free to move" and they carry a "charge". So the correct pair matching is (1: free to move; 2 : charge).

Explain

The term "delocalized" in the context of electrons in metals refers to the quality that these electrons are not held in place or permanently attached to a singular atom, covalent bond, ion, etc. Instead, they possess the ability to move freely throughout the metallic structure or lattice. This mobility is essential, playing a significant role in numerous attributes related to metals.<br /><br />Actually, the true power of the delocalized electrons in metals lays in their capacity to carry a charge. In essence, the ability to convey a charge is integral to the conduction of electricity. When metals conduct electricity, the delocalized or free moving electrons carry the electric charge through the metallic structure, creating the electric current we use in everyday life. Comparatively, voltage could be crudely viewed as the "push" causing the electrons to flow but this is derived from a separate source (i.e., a battery or generator), not from the nature of the delocalized electrons themselves.<br /><br />Therefore, it would be accurate to say delocalized electrons within metals are free to move, permitting them to transport a charge, rather than a voltage. The statement connectedness between proactivity in mechanistic revisions and forward-thinking change of position from the original spot yet correspond to the anatomical concept of {delocalization}, leading to judgement two to be a comparatively more suitable fit in theoretical scientific terms. Thus, for the most part, the precise descriptive information as given in enlightening documents helps address open scientific inquiries in this case and is consistent with collective expert validations.
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