The ratio of electrostatic energy between the given charges and the ratio of distance in the given statements should be calculated by using the concept of electrostatic energy. Concept Introduction: Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule ( J ) . Energy is in the form of kinetic energy or potential energy . Kinetic energy is the energy associated with motion . Potential energy is the energy possessed by virtue of position . Other forms of potential energy are chemical energy and electrostatic energy. Electrostatic energy is the potential energy which results from the interaction of charged particles. Oppositely charged particles attract each other and like particles charges repel each other. The magnitude of the resulting electrostatic potential energy is directly proportional to the product of the two charges ( Q 1 and Q 2 ) divided by the distance between the two charges ( d ). E el ∝ Q 1 Q 2 d If the charges Q 1 and Q 2 are opposite (i.e., one positive and one negative), E el gets a negative value which means attraction. Like charges (i.e., either both positive or both negative) result in a positive value of E el which indicates repulsion.
The ratio of electrostatic energy between the given charges and the ratio of distance in the given statements should be calculated by using the concept of electrostatic energy. Concept Introduction: Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule ( J ) . Energy is in the form of kinetic energy or potential energy . Kinetic energy is the energy associated with motion . Potential energy is the energy possessed by virtue of position . Other forms of potential energy are chemical energy and electrostatic energy. Electrostatic energy is the potential energy which results from the interaction of charged particles. Oppositely charged particles attract each other and like particles charges repel each other. The magnitude of the resulting electrostatic potential energy is directly proportional to the product of the two charges ( Q 1 and Q 2 ) divided by the distance between the two charges ( d ). E el ∝ Q 1 Q 2 d If the charges Q 1 and Q 2 are opposite (i.e., one positive and one negative), E el gets a negative value which means attraction. Like charges (i.e., either both positive or both negative) result in a positive value of E el which indicates repulsion.
Solution Summary: The author explains the concept of electrostatic energy, which is the capacity to do work or transfer heat.
The ratio of electrostatic energy between the given charges and the ratio of distance in the given statements should be calculated by using the concept of electrostatic energy.
Concept Introduction:
Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule (J). Energy is in the form of kinetic energy or potential energy. Kinetic energy is the energy associated with motion. Potential energy is the energy possessed by virtue of position. Other forms of potential energy are chemical energy and electrostatic energy.
Electrostatic energy is the potential energy which results from the interaction of charged particles. Oppositely charged particles attract each other and like particles charges repel each other. The magnitude of the resulting electrostatic potential energy is directly proportional to the product of the two charges (Q1 and Q2) divided by the distance between the two charges (d).
Eel∝Q1Q2d
If the charges Q1 and Q2 are opposite (i.e., one positive and one negative), Eel gets a negative value which means attraction. Like charges (i.e., either both positive or both negative) result in a positive value of Eel which indicates repulsion.
(b)
Interpretation Introduction
Interpretation:
The ratio of electrostatic energy between the given charges and the ratio of distance in the given statements should be calculated by using the concept of electrostatic energy.
Concept Introduction:
Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule (J). Energy is in the form of kinetic energy or potential energy. Kinetic energy is the energy associated with motion. Potential energy is the energy possessed by virtue of position. Other forms of potential energy are chemical energy and electrostatic energy.
Electrostatic energy is the potential energy which results from the interaction of charged particles. Oppositely charged particles attract each other and like particles charges repel each other. The magnitude of the resulting electrostatic potential energy is directly proportional to the product of the two charges (Q1 and Q2) divided by the distance between the two charges (d).
Eel∝Q1Q2d
If the charges Q1 and Q2 are opposite (i.e., one positive and one negative), Eel gets a negative value which means attraction. Like charges (i.e., either both positive or both negative) result in a positive value of Eel which indicates repulsion.
1. Calculate the accurate monoisotopic mass (using all 1H, 12C, 14N, 160 and 35CI) for your product using the table in
your lab manual. Don't include the Cl, since you should only have [M+H]*. Compare this to the value you see on
the LC-MS printout. How much different are they?
2. There are four isotopic peaks for the [M+H]* ion at m/z 240, 241, 242 and 243. For one point of extra credit,
explain what each of these is and why they are present.
3. There is a fragment ion at m/z 184. For one point of extra credit, identify this fragment and confirm by
calculating the accurate monoisotopic mass.
4. The UV spectrum is also at the bottom of your printout. For one point of extra credit, look up the UV spectrum
of bupropion on Google Images and compare to your spectrum. Do they match? Cite your source.
5. For most of you, there will be a second chromatographic peak whose m/z is 74 (to a round number). For one
point of extra credit, see if you can identify this molecule as well and confirm by…
Please draw, not just describe!
can you draw each step on a piece of a paper please this is very confusing to me
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