Solving for a gaseous reactant The great French chemist Antoine Lavoisier discovered the Law of Conservation of Mass in part by doing a famous experiment in 1775. In this experiment Lavoisier found that mercury(II) oxide, when heated, decomposed into liquid mercury and an invisible and previously unknown substance: oxygen gas. 1. Write a balanced chemical equation, including physical state symbols, for the decomposition of solid mercury(II) oxide (HgO) into liquid mercury and gaseous dioxygen. 0 2. Suppose 49.0 mL of dioxygen gas are produced by this reaction, at a temperature of 120.0 °C and pressure of exactly 1 atm. Calculate the mass of mercury(II) oxide that must have reacted. Round your answer to 3 significant digits. 08 Explanation Check 1910 762d 1127-9 0-0 0, 8 0.2 X Ś db Ar 1-a59782e61fbb&ag=r735012&sfe=1788cd47&sig=PCK7icABpePPZol9wVj_E9gKn0Pi6FOTr7R3rMUmfWw.&crid=2zvfx50b&cf=5773664&fq=0&t=2&td_s-www.c

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O Gases
Solving for a gaseous reactant
The great French chemist Antoine Lavoisier discovered the Law of Conservation of Mass in part by doing a famous experiment in 1775. In this experiment
Lavoisier found that mercury(II) oxide, when heated, decomposed into liquid mercury and an invisible and previously unknown substance: oxygen gas.
8
FI
1. Write a balanced chemical equation, including physical state symbols, for the
decomposition of solid mercury(II) oxide (HgO) into liquid mercury and gaseous
dioxygen.
2. Suppose 49.0 mL of dioxygen gas are produced by this reaction, at a temperature
of 120.0 °C and pressure of exactly 1 atm. Calculate the mass of mercury(II) oxide
that must have reacted. Round your answer to 3 significant
digits.
Explanation
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Transcribed Image Text:esc O Gases Solving for a gaseous reactant The great French chemist Antoine Lavoisier discovered the Law of Conservation of Mass in part by doing a famous experiment in 1775. In this experiment Lavoisier found that mercury(II) oxide, when heated, decomposed into liquid mercury and an invisible and previously unknown substance: oxygen gas. 8 FI 1. Write a balanced chemical equation, including physical state symbols, for the decomposition of solid mercury(II) oxide (HgO) into liquid mercury and gaseous dioxygen. 2. Suppose 49.0 mL of dioxygen gas are produced by this reaction, at a temperature of 120.0 °C and pressure of exactly 1 atm. Calculate the mass of mercury(II) oxide that must have reacted. Round your answer to 3 significant digits. Explanation @ S 38² Check F2 https://azinsight.adsrvr.org/track/clk?imp=fbec12b0-7f3d-4127-929d-a59782e61fbb&ag=r735012&sfe=1788cd47&sig=PCK7icABpePPZol9wV_E9gKn0P16FOTr7R3rMUmfWw.&crid=2zvfx50b&cf=5773664&fq=0&t=2&td_s=www.c #3 80 F3 $ 4 a F4 do LO % 5 F5 0-0 6 3 X F6 & S 7 4 F7 * 00 8 DII FB 9 FO 0 db F10 Ar -
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