Question 5 temperature and pressure whereby CO2, H2O, and N2 react to form C»H28O2N and O2. In the reaction, the student had 14.57 moles of CO2, 128.75 grams of H2O, and 59.7 grams of N2, and generated only 79.27 grams of C»H28O2N. Please determine the limiting reagent, the theoretical yield, and the percent yield. A student performed a reaction at high
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- The combustion of liquid ethanol (C2H5OH)(C2H5OH) produces carbon dioxide and water. After 4.63 mLmL of ethanol (density=0.789g/ml)(density=0.789g/ml) was allowed to burn in the presence of 15.50 gg of oxygen gas, 3.70 mLmL of water (density=1.00g/ml)(density=1.00g/ml) was collected. Determine the theoretical and percent yeild of h2o in the reaction.In the presence of nitric acid, UO2+ undergoes a redox process. It is converted to UO2 2+ and nitric oxide (NO) gas is produced according to the following unbalanced equation. H+(aq) +NO-(aq) +UO2+(aq) → NO(g) +UO22+(aq) +H2O If 2.55 x 102 mL NO(g) is isolated at 29°C and 1.5atm,what amount (moles) of UO2+ was used inthe reaction? (Hint :Balance the reaction by the oxidation states method.)Since gas stoichiometry always begins with a balanced chemical equation, determine the coefficients necessary to balance the following: _______ C4H10 + 13O2 → _________ CO2 + 10HOH in the presence of heat.
- 1g of solid magnesium hydroxide is reacted with 2g of solid NH4Cl (ammonium chloride) to produce ammonia gas (NH3), sodium chloride and water. Calculate the following and show all working out a) The theoretical yield of ammonia gas in grams b) The % yield of ammonia gas if only 0.5g were produced pls help asapMethane is produced in the human gut during digestion. As it passes through the digestive tract, it collects at thelower end and is emitted as flatulence. About 10% of a fart is composed of methane.__CH4 + __O2 → __ CO2 + __H2Oa) The average human fart contains 0.00643g of methane gas. Ifyou were to light said fart (and you SHOULD NOT), what mass ofoxygen would combust along with it?b) People, on average, pass 0.75L of gas per day. This is about0.0536g of methane per 24 hour period (remember, only ~10% ismethane). What mass of water could be generated by one personigniting their “methane emission”? c) How many water molecules is this? (SHOW ALL WORK IN TRAIN TRACKS)Q2: A fuel oil is burned with 65% excess air, and the combustion characteristics of thefuel oil are similar to a paraffin series dodecane C12H26. Determine: (a) the actualair/fuel ratio (A/F) on a mole basis, (b) the actual air/fuel ratio (A/F) on a mass basis,and (c) the actual volumetric (molar) analysis of the products of combustion. State allthe assumptions that you would made before solving this question. Air contains 21%O2 and 79% N2 by mole. Do not solve in tabulated form.
- Identify the limiting reactânt when 43.25g of CaC2 reacts with 33.71g of water to form C2H2 and Ca(OH)2After the following reaction is balanced: C₆H₁₂O₆ + O₂ →CO₂ + H₂O. What are the stoichiometric coefficients of C₆H₁₂O₆, O₂, CO₂ and H₂O, respectively.7.Since gas stoichiometry always begins with a balanced chemical equation, determine the coefficients necessary to balance the following: ______C4H10 + 13O2 →______CO2 + 10HOH in the presence of heat. Blank 1: _____ Blank 2: _____
- 80 grams of Potassium (K) was put in 3000 ml of water. They underwent a violent reaction and produced hydrogen gas which was allowed to mix with 20 g of air. Find the average molecular weight of that mixed gas stream. [Ref: 16O, 14N, 39K, 1H]Citric acid, C6H8O7, a component of jams, jellies, and fruity soft drinks, is prepared industrially via fermentation of sucrose by the mold Aspergillus niger. The equation representing this reaction is C12H22O11 + H2O + 3O2 --> 2C6H8O7 + 4H2O Using a metric ton(1000kg) of sucrose the expected yield is 1122Kg. On average if only 1036kg is produced, what is the % yield for this reaction?If 0.460 mol of liquid CS2 and 0.500 mol of gaseous O2 are reacted stoichiometrically according to the balanced equation, how many moles of gaseous CO2are produced? CS2(l) + 3O2(g) → CO2(g) + 2SO2(g) Molar Mass (g/mol) CS2 76.143 O2 31.998 CO2 44.009 Density (g/mL) CS2 1.26 Molar Volume (L) 22.4 at STP Gas Constant(L.atm.mol-1.K-1) 0.0821