B) melting an iron bar
C) crushing an aluminum can
D) burning magnesium ribbon
Among the given options, burning a magnesium ribbon results in a chemical change. It is because the burning process changes magnesium into a new substance, magnesium oxide.
The process that results in a chemical change among the given options is D) burning magnesium ribbon. A chemical change is a process where one or more substances are altered into one or more new and different substances. In the case of burning magnesium ribbon, the magnesium reacts with the oxygen in the air to create a new substance, magnesium oxide. This is a characteristic of a chemical change, which is very different from physical changes caused by tearing tin foil, melting an iron bar, or crushing an aluminum can. These actions alter the physical state or shape of the matter, but not its internal structure or chemical composition.
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15.0 moles of ammonium sulfate are formed by the reaction of 30.0 moles of ammonia with sulfuric acid.
Let's consider the reaction between ammonia and sulfuric acid to produce ammonium sulfate.
2 NH₃ + H₂SO₄ ⇒ (NH₄)₂SO₄
The molar ratio of NH₃ to (NH₄)₂SO₄ is 2:1. The moles of (NH₄)₂SO₄ produced from 30.0 moles of NH₃ are:
15.0 moles of ammonium sulfate are formed by the reaction of 30.0 moles of ammonia with sulfuric acid.
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The net ionic equation is
Ag⁺(aq) +Cl⁻(aq) → AgCl(s)
Explanation
AgNO₃ (aq) + KCl (aq)→ AgCl(s) +KNO₃(aq)
from above molecular equation break all soluble electrolyte into ions
Ag⁺(aq) +NO₃⁻ (aq) + K⁺(aq) +Cl⁻(aq) → AgCl (s) + K⁺(aq) + No₃⁻(aq)
cancel the spectator ions in both side of equation =K⁺ and NO₃⁻ ions
The net ionic equation is therefore
= Ag⁺(aq) + Cl⁻(aq) → AgCl(s)
SiC
C25H52
Zn
Answer:
The paraffin is the softest.
Explanation:
The others materials, they have a bigger value of hardness in Mohs scale, like the CuO with a value of 3.5, the SiC with a value of 9, and Zinc with a value of 2.5.
What volume of oxygen gas is released at STP if 10.0 g of potassium chlorate is decomposed? (The molar mass of KClO3 is 122.55 g/mol.)
Your answer is 2.74.