Phosphoric acid, which is commonly used as rust inhibitor, food additive and etching agent for dental and orthopedic use, can be synthesized using a two-step thermal process. In the first step, phosphorus and oxygen react to form diphosphorus pentoxide: P(1)+5 0,(g) 2 P,05(g) In the second step, diphosphorus pentoxide and water react to form phosphoric acid: P,0,(g)+3 H,O(1)→2 H,PO,(1) Write the net chemical equation for the production of phosphoric acid from phosphorus, oxygen and water. Be sure your equation is balanced.

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Phosphoric acid, which is commonly used as rust inhibitor, food additive and etching agent for dental and orthopedic use, can be synthesized using a two-step
thermal process. In the first step, phosphorus and oxygen react to form diphosphorus pentoxide:
P4(1)+5 0,(g) 2 P,05(g)
In the second step, diphosphorus pentoxide and water react to form phosphoric acid:
P,0,(g)+3 H,O(1)→2 H,PO,(1)
Write the net chemical equation for the production of phosphoric acid from phosphorus, oxygen and water. Be sure your equation is balanced.
Transcribed Image Text:Phosphoric acid, which is commonly used as rust inhibitor, food additive and etching agent for dental and orthopedic use, can be synthesized using a two-step thermal process. In the first step, phosphorus and oxygen react to form diphosphorus pentoxide: P4(1)+5 0,(g) 2 P,05(g) In the second step, diphosphorus pentoxide and water react to form phosphoric acid: P,0,(g)+3 H,O(1)→2 H,PO,(1) Write the net chemical equation for the production of phosphoric acid from phosphorus, oxygen and water. Be sure your equation is balanced.
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