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In GRAPHITE, the carbon atoms each bond to -..(1)...to form layers of -(2)... 1: THREE other carbons:2: tetrahedral rings 1: THREE other carbons;2: hexagonal rings 1: FOUR other carbons; 2:hexagonal rings 1: FOUR other carbons.2: tetrahedral rings

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In GRAPHITE, the carbon atoms each bond to -..(1)...to form layers of -(2)... 
1: THREE other carbons:2: tetrahedral rings
1: THREE other carbons;2: hexagonal rings
1: FOUR other carbons; 2:hexagonal rings
1: FOUR other carbons.2: tetrahedral rings

In GRAPHITE, the carbon atoms each bond to -..(1)...to form layers of -(2)... 1: THREE other carbons:2: tetrahedral rings 1: THREE other carbons;2: hexagonal rings 1: FOUR other carbons; 2:hexagonal rings 1: FOUR other carbons.2: tetrahedral rings

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QuentinElite · Tutor for 8 years

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1: THREE other carbons; 2: hexagonal rings

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## Step 1:<br />We need to identify the correct bonding structure of carbon atoms in graphite. Graphite is a form of carbon where each carbon atom is bonded to three other carbon atoms.<br /><br />### \( \textbf{Number of carbon bonds in graphite = THREE} \)<br /><br />## Step 2:<br />Next, we need to identify the shape of the rings formed by these bonded carbon atoms in graphite. The carbon atoms in graphite are arranged in a hexagonal lattice.<br /><br />### \( \textbf{Shape of carbon rings in graphite = hexagonal} \)
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