11. THE P-BLOCK ELEMENTS
11. THE P-BLOCK ELEMENTS

189670 Which one is used as a bye-product in Serpeck's process

1 \(N{H_3}\)
2 \(C{O_2}\)
3 \({N_2}\)
4 \(P{H_3}\)
11. THE P-BLOCK ELEMENTS

189671 In the metallurgy of aluminium, cryolite is mixed in the molten state because it

1 Increases the melting point of alumina
2 Oxidises alumina
3 Reduces alumina
4 Decreases the melting point of alumina
11. THE P-BLOCK ELEMENTS

189672 In the electrolytic extraction of aluminium, cryolite is used

1 To obtain more aluminium
2 To decrease temperature to dissolve bauxite
3 To protect the anode
4 As reducing agent
11. THE P-BLOCK ELEMENTS

189673 In the extraction of aluminium, bauxite is dissolved in cryolite because

1 It acts as a solvent
2 It reduces melting point of aluminium oxide
3 It increases the resistance of aluminium oxide
4 Bauxite becomes active
11. THE P-BLOCK ELEMENTS

189670 Which one is used as a bye-product in Serpeck's process

1 \(N{H_3}\)
2 \(C{O_2}\)
3 \({N_2}\)
4 \(P{H_3}\)
11. THE P-BLOCK ELEMENTS

189671 In the metallurgy of aluminium, cryolite is mixed in the molten state because it

1 Increases the melting point of alumina
2 Oxidises alumina
3 Reduces alumina
4 Decreases the melting point of alumina
11. THE P-BLOCK ELEMENTS

189672 In the electrolytic extraction of aluminium, cryolite is used

1 To obtain more aluminium
2 To decrease temperature to dissolve bauxite
3 To protect the anode
4 As reducing agent
11. THE P-BLOCK ELEMENTS

189673 In the extraction of aluminium, bauxite is dissolved in cryolite because

1 It acts as a solvent
2 It reduces melting point of aluminium oxide
3 It increases the resistance of aluminium oxide
4 Bauxite becomes active
11. THE P-BLOCK ELEMENTS

189670 Which one is used as a bye-product in Serpeck's process

1 \(N{H_3}\)
2 \(C{O_2}\)
3 \({N_2}\)
4 \(P{H_3}\)
11. THE P-BLOCK ELEMENTS

189671 In the metallurgy of aluminium, cryolite is mixed in the molten state because it

1 Increases the melting point of alumina
2 Oxidises alumina
3 Reduces alumina
4 Decreases the melting point of alumina
11. THE P-BLOCK ELEMENTS

189672 In the electrolytic extraction of aluminium, cryolite is used

1 To obtain more aluminium
2 To decrease temperature to dissolve bauxite
3 To protect the anode
4 As reducing agent
11. THE P-BLOCK ELEMENTS

189673 In the extraction of aluminium, bauxite is dissolved in cryolite because

1 It acts as a solvent
2 It reduces melting point of aluminium oxide
3 It increases the resistance of aluminium oxide
4 Bauxite becomes active
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11. THE P-BLOCK ELEMENTS

189670 Which one is used as a bye-product in Serpeck's process

1 \(N{H_3}\)
2 \(C{O_2}\)
3 \({N_2}\)
4 \(P{H_3}\)
11. THE P-BLOCK ELEMENTS

189671 In the metallurgy of aluminium, cryolite is mixed in the molten state because it

1 Increases the melting point of alumina
2 Oxidises alumina
3 Reduces alumina
4 Decreases the melting point of alumina
11. THE P-BLOCK ELEMENTS

189672 In the electrolytic extraction of aluminium, cryolite is used

1 To obtain more aluminium
2 To decrease temperature to dissolve bauxite
3 To protect the anode
4 As reducing agent
11. THE P-BLOCK ELEMENTS

189673 In the extraction of aluminium, bauxite is dissolved in cryolite because

1 It acts as a solvent
2 It reduces melting point of aluminium oxide
3 It increases the resistance of aluminium oxide
4 Bauxite becomes active