2. Manganese(IV) oxide and aluminum metal react at high temperatures to form manganese metal and aluminum(III) oxide: 3 MnO2 (/) + 4 Al (I) → 3 Mn (I) + 2 Al¿O3 (s). Imagine that 40.0 g of manganese(IV) oxide and 20.0 g of aluminum metal are allowed to react. Assuming that no product is lost during the reaction, calculate the maximum amount of aluminum oxide that can be produced.

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Chapter4: Stoichiometry
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Problem 4.84PAE: 4.84 Aluminum chloride (AlCl3) is used as a catalyst in the production of polyisobutylene, which is...
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2. Manganese(IV) oxide and aluminum metal react at high temperatures to form manganese metal and aluminum(III) oxide:
3 MnO2 (I) + 4 Al (I) → 3 Mn (I) + 2 Al2O3 (s).
Imagine that 40.0 g of manganese(IV) oxide and 20.0 g of aluminum metal are allowed to react. Assuming that no
product is lost during the reaction, calculate the maximum amount of aluminum oxide that can be produced.
Transcribed Image Text:2. Manganese(IV) oxide and aluminum metal react at high temperatures to form manganese metal and aluminum(III) oxide: 3 MnO2 (I) + 4 Al (I) → 3 Mn (I) + 2 Al2O3 (s). Imagine that 40.0 g of manganese(IV) oxide and 20.0 g of aluminum metal are allowed to react. Assuming that no product is lost during the reaction, calculate the maximum amount of aluminum oxide that can be produced.
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