Determine how much energy is required to take away neutron
Determine how much energy is required to take away (i) a neutron or (ii) a proton from the nucleus 16/8 O?
Note that this is a question regarding the binding energy of the last neutron or proton.
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Given that the mass of 1 mole of deuterium is 2.01410 g, and the mass of one mole of helium is4.00260 g, determine the number of moles of deuterium required to heat the swimming pool from 12.00 degrees C to 25.00 degrees C.
Determine the work done if a gas is compressed from 8.8 L to 3.3 L at constant temperature by a constant pressure of 2.7 atm, and give the answer in units of joules. (1 L· atm = 101.3 J)
The shaft of a pump begins from rest and consists of an angular acceleration of 5.20 rad/s2 for 20.0 s. (i) At the end of the interval, determine the shaft's angular speed?
What experiment could you do, what data would you collect, and how would you analyze the data to ensure that 447nm is the "best" for measuring the absorbance of FeNCS2+ in this experiment?
Determine how much energy is required to take away (i) a neutron or (ii) a proton from the nucleus 16/8 O? Note that this is a question regarding the binding energy of the last neutron or proton.
Explain will the [Fe+3] equilibrium concentration be determined to be too high or too low. Will the measured Kc be to high or too low.
The person plans to put $500 per quarter into the retirement account paying interest at nominal annal rate of 4% compounded quarterly.
The force on a particle is directed all along the x axis and given by F = 0.88(x/4.0 - 0.69) where x is in meters and F is in Newton. Determine the work done by the force in moving the particle from x = 0 to x = 6.9 m.
At what pressure should the tank be operated? Discuss what will be the composition of the vapor stream? Assume that the vapor is an ideal gas.
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