An experimental spacecraft consumes a special fuel at a rate of 2.80 10² L/min. The density...
An experimental spacecraft consumes a special fuel at a rate of 2.80 x 102 L/min. The density of the fuel is 0.800 g/mL and the standard enthalpy of combustion of the fuel is -43.2 kJ/g. Calculate the maximum power (in units of kilowatts) that can be produced by this spacecraft. 1 kW = 1 kJ/s maximum power kW
An experimental spacecraft consumes a special fuel at a rate of 247 L/min. The density of the fuel is 0.900 g/mL and the standard enthalpy of combustion of the fuel is -54.2 kJ/g. Calculate the maximum power (in units of kilowatts) that can be produced by this spacecraft. 1 kW = 1 kJ/s
1 pts Question 14 An automobile engine consumes fuel at a rate of 32 L/h and delivers 90 kW of power to the wheels. The fuel has a heating value of 44,000 kJ/kg and a density of 800 kg/m ( 1 1000L) The thermal enciency of this engine is closer to:
1 pts An automobile engine consumes fuel at a rate of 32 L/h and delivers 90 KW of power to the wheels. The fuel has a heating value of 44000Kkg and a density of 800 kg/m ( 1m = 1000 L) The thermal efficiency of this engine is closer to: 0.33 0.42 0.29 0.55 0.71 O 0.12 0.21 0.37
Methanol (CH3OH) is used as a fuel in race cars. Part A Write a balanced equation for the combustion of liquid methanol in air, assuming H2O(g) as a product. Express your answer as a chemical equation. Identify all of the phases in your answer. SubmitPrevious AnswersRequest Answer Incorrect; Try Again; 5 attempts remaining Part B Calculate the standard enthalpy change for the combustion of 1 mol of liquid methanol, assuming H2O(g) as a product. Express your answer using four significant...
Ethanol (C2H5OH) is currently blended with gasoline as an automobile fuel. A:Write a balanced equation for the combustion of liquid ethanol in air. B:Calculate the standard enthalpy change for the reaction, assuming H2O(g) as a product. C:Calculate the heat produced per liter of ethanol by combustion of ethanol under constant pressure. Ethanol has a density of 0.789 g/mL. D:Calculate the mass of CO2 produced per kJ of heat emitted.
Experimental Data and Analysis: Molarity of HCl: 500 mL of 20M Molarity of NaOH: 51.0 ml of 20 M Trial 1 Trial 2 35.5 22.5 221 T2. Maximum temperature (°C) T1, Minimum temperature (°C) AT (°C) p. Solution's Density V. Total Volume of the Reaction Mixture (mL) c. Solution's Heat Capacity 9. Heat of Neutralization (J) 1.04 g/mL 101.0 3.89 J/g.°C nHCl (mol) = MHCI X VL.HCI or moles of HCI Used (mol) = (Molarity of HCI) (Volume in L...
3) A certain chemical reaction that occurs in an aqueous solution absorbs 32.1 kJ of energy from the surroundings. Assuming that the heat capacity of the solution is 4.184 J/g C, what is the change in temperature for the solution if the solution has a volume of 542 mL? The density of the solution is 1.10 kg/L. 4) If hydrogen is consumed as a combustion fuel for energy production, how many kilowatt- hours can be produced if 2.00 moles of...
Many power plants produce energy by burning carbon-based fuels, which also produces carbon dioxide. Carbon dioxide is a greenhouse gas, so over-production can have negative effects on the environment. Use enthalpy of formation data to calculate the number of moles of CO2(g) produced per megajoule of heat released from the combustion of each fuel under standard conditions (1 atm and 25 �C). Each must be in mol * MJ^-1 (a) coal, C(s, graphite) (b) natural gas, CH4(g); (c) propane, C3H8(g);...
3. When 10 mL of 2.0 M HCl is combined with 30 mL of 0.667 M NAOH a temperature change of 6.9 °C was observed. How much heat was given off per mole of water produced? ASsume the volumes are additive and that this NaCl solution has a density of 1.02 g/mL and a specific heat of 4.00 J/g-C. 2. How much heat is needed to change 32 g of 4.A 0.865 g sample of candy is burned in a...