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Despite the fact that aluminium is a rea...

Despite the fact that aluminium is a reactive metal, it is a stable in air as well as in water. This is due to the formation of thin layer of oxide on the surface of aluminium metal which makes it passive for further attack. The layer is so useful, that in industry, it is purposely deposited by an electrolytic process called anodising. Reaction of aluminium with oxygen is highly exothermic and is called thermite reaction.
`2Al_((s)) +(3)/(2) O_(2(g)) rarr Al_(2)O_(3(s)) Delta_(f) H^(Ө) = -1670 kJmol^-1`
This reaction finds application for welding of metal and in the metallurgical extraction of many metals from their oxides.
The limitation is that to start the reaction, high temperature is required for which an ignition mixture is required.
The reaction which is not involved in thermite process is

A

`2Fe + Al_(2)O_(3) rarr Fe_(2)O_(3) + 2Al`

B

`B_(2)O_(3) + 2Al rarr 2B + Al_(2) O_(3)`

C

`3Mn_(3) O_(4) + 8 Al rarr 9Mn + 4 Al_(2)O_(3)`

D

`Cr_(2)O_(3) + 2Al rarr 2Cr + Al_(2) O_(3)`

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The correct Answer is:
A

In thermote process, it is `Al` which is used is a reducing agent and not `Fe`.
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Despite the fact that aluminium is a reactive metal, it is a stable in air as well as in water. This is due to the formation of thin layer of oxide on the surface of aluminium metal which makes it passive for further attack. The layer is so useful, that in industry, it is purposely deposited by an electrolytic process called anodising. Reaction of aluminium with oxygen is highly exothermic and is called thermite reaction. 2Al_((s)) +(3)/(2) O_(2(g)) rarr Al_(2)O_(3(s)) Delta_(f) H^(Ө) = -1670 kJmol^-1 This reaction finds application for welding of metal and in the metallurgical extraction of many metals from their oxides. The limitation is that to start the reaction, high temperature is required for which an ignition mixture is required. Anodised aluminium is.

Despite the fact that aluminium is a reactive metal, it is a stable in air as well as in water. This is due to the formation of thin layer of oxide on the surface of aluminium metal which makes it passive for further attack. The layer is so useful, that in industry, it is purposely deposited by an electrolytic process called anodising. Reaction of aluminium with oxygen is highly exothermic and is called thermite reaction. 2Al_((s)) +(3)/(2) O_(2(g)) rarr Al_(2)O_(3(s)) Delta_(f) H^(Ө) = -1670 kJmol^-1 This reaction finds application for welding of metal and in the metallurgical extraction of many metals from their oxides. The limitation is that to start the reaction, high temperature is required for which an ignition mixture is required. Aluminium becomes passive in :

Despite the fact that aluminium is a reactive metal, it is a stable in air as well as in water. This is due to the formation of thin layer of oxide on the surface of aluminium metal which makes it passive for further attack. The layer is so useful, that in industry, it is purposely deposited by an electrolytic process called anodising. Reaction of aluminium with oxygen is highly exothermic and is called thermite reaction. 2Al_((s)) +(3)/(2) O_(2(g)) rarr Al_(2)O_(3(s)) Delta_(f) H^(Ө) = -1670 kJmol^-1 This reaction finds application for welding of metal and in the metallurgical extraction of many metals from their oxides. The limitation is that to start the reaction, high temperature is required for which an ignition mixture is required. Thermite mixture used for welding is

Despite the fact that aluminium is a reactive metal, it is a stable in air as well as in water. This is due to the formation of thin layer of oxide on the surface of aluminium metal which makes it passive for further attack. The layer is so useful, that in industry, it is purposely deposited by an electrolytic process called anodising. Reaction of aluminium with oxygen is highly exothermic and is called thermite reaction. 2Al_((s)) +(3)/(2) O_(2(g)) rarr Al_(2)O_(3(s)) Delta_(f) H^(Ө) = -1670 kJmol^-1 This reaction finds application for welding of metal and in the metallurgical extraction of many metals from their oxides. The limitation is that to start the reaction, high temperature is required for which an ignition mixture is required. Which of the following metals cannot be extracted by using Al as a reducing agent ?

Despite the fact that aluminium is a reactive metal, it is a stable in air as well as in water. This is due to the formation of thin layer of oxide on the surface of aluminium metal which makes it passive for further attack. The layer is so useful, that in industry, it is purposely deposited by an electrolytic process called anodising. Reaction of aluminium with oxygen is highly exothermic and is called thermite reaction. 2Al_((s)) +(3)/(2) O_(2(g)) rarr Al_(2)O_(3(s)) Delta_(f) H^(Ө) = -1670 kJmol^-1 This reaction finds application for welding of metal and in the metallurgical extraction of many metals from their oxides. The limitation is that to start the reaction, high temperature is required for which an ignition mixture is required. Anodising can be done by elecrolysing dil H_(2)SO_(4) with Al as anode. This results in :

The ore of aluminium metal is-

Aluminium is a noble metal

Aluminium is a type of metal that is used to make

CENGAGE CHEMISTRY-P-BLOCK GROUP 13 - BORON FAMILY-Exercise (Linked Comprehension)
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  2. Despite the fact that aluminium is a reactive metal, it is a stable in...

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  3. Despite the fact that aluminium is a reactive metal, it is a stable in...

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  6. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  7. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  8. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  9. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  10. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  11. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  12. "Colemanite" + Na(2)CO(3) overset("Fused")rarr (A) + (B) + CO(2) und...

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  13. Boron with hydrogen forms a number of hydrides which are known are bor...

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  14. Boron with hydrogen forms a number of hydrides which are known are bor...

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  15. Boron with hydrogen forms a number of hydrides which are known are bor...

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  16. Boron with hydrogen forms a number of hydrides which are known are bor...

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  17. Boron with hydrogen forms a number of hydrides which are known are bor...

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  18. Boron with hydrogen forms a number of hydrides which are known are bor...

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  19. Boron with hydrogen forms a number of hydrides which are known are bor...

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  20. Boron reacts with oxygen at 700^@C to give (A). Compound (A) reacts wi...

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