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Question: Sometimes there is no active hard constraint. Assume that the fired heater in Figure has no hard constraint, but that a side reaction forming undesired products begins to occur significantly at 850°C. This side reaction has an activation energy with larger magnitude than the product reaction. Sketch the shape of the performance function for this situation. How would you determine the best desired (average) value of the temperature and the best temperature distribution?
determine the gram formula mass of the compound
What is the pressure (mmHg) if 800 kPa is increased in volume from 1.75L to 3.0L and the temperature is increased from 65degrees Celsius to 100degrees Celsius
How do the following changes affect the value of the equilibrium constant for a gas-phase exothermic reaction:
Question- An electron microscope employs a beam of electrons to obtain an image of an object. If the wavelength of the electron is 18.3 pm, what is its velocity
Explain why lan Forsythe, a middle-aged college professor from Boston, was in the Swiss Alps studying astronomy during his sabbatical leave. He had been there for two days as well as planned to stay the entire year.
what is the energy difference between the heats of formation you calculated for carbocation A and B?
Provide the name of the major alkene product that results when (2S,3S)-2-bromo-3-methylpentane is treated with sodium methoxide
Calculate the difference in pH when 4.01 g of NaClO is added to 364.8 mL of 0.50 M HClO. Ignore any changes in volume.
P4S3 -> Dinitrogen pentoxide -> Stannic oxalate -> Zinc cyanide -> Chromic bisulfate -> Fe2(CrO4)3 -> HNO2 -> CoHPO4 ->
Assuming the rotation of a diatomic molecule in the j = 10 state may be approximated using classical mechanics, calculate how many revolutions per second 23Na35Cl (g) makes in the J = 10 rotational state. The rotational constant of23Na35Cl (g) is ..
Why is it important to be responsible to others on a personal, local, global, and digital level?
Using data from the thermodynamic quantites at 298.15 K, calculate delta H^degree, delta S^degree, and delta G^degree at 298K for each reaction. Show that delta G^degree = delta H^degree - T(deltaS^degree)
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