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1.5 mole of O2 combine with the one AG form oxide mgo the mass of MG atomic mass is equal to 24 that has combined is?
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1.5 mole of O2 combine with the one AG form oxide mgo the mass of MG a...
Understanding the Reaction
The reaction between magnesium (Mg) and oxygen (O2) to form magnesium oxide (MgO) can be represented by the balanced chemical equation:
2Mg + O2 → 2MgO
In this reaction, magnesium and oxygen combine to form magnesium oxide.
Calculating Moles of Magnesium
1. Moles of Oxygen: We start with 1.5 moles of O2.
2. Molar Ratio: According to the balanced equation, 1 mole of O2 reacts with 2 moles of Mg. Therefore, to find the moles of Mg needed, we can use the molar ratio:
- Moles of Mg = 2 * (Moles of O2)
- Moles of Mg = 2 * 1.5 = 3 moles of Mg
Mass of Magnesium
1. Atomic Mass of Mg: The atomic mass of magnesium (Mg) is given as 24 g/mol.
2. Calculating Mass: To find the mass of magnesium that has combined, we use the formula:
- Mass = Moles * Atomic Mass
- Mass of Mg = 3 moles * 24 g/mol = 72 grams
Conclusion
In this reaction, 3 moles of magnesium combine with 1.5 moles of oxygen to produce magnesium oxide. The total mass of magnesium that has combined is 72 grams. This calculation is essential for understanding stoichiometry in chemical reactions and is relevant for NEET preparation.
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1.5 mole of O2 combine with the one AG form oxide mgo the mass of MG atomic mass is equal to 24 that has combined is?
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