
Concept explainers
(a)
Interpretation:
Histidine at
Concept Introduction:
On electrophoresis, the amino acids which contains net positive charge will move towards the negative electrode and the amino acids which contain net negative charge will move towards positive electrode.
(b)
Interpretation:
Lysine at
Concept Introduction:
On electrophoresis, the amino acids which contains net positive charge will move towards the negative electrode and the amino acids which contain net negative charge will move towards positive electrode.
(c)
Interpretation:
Glutamic acid at
Concept Introduction:
On electrophoresis, the amino acids which contains net positive charge will move towards the negative electrode and the amino acids which contain net negative charge will move towards positive electrode.
(d)
Interpretation:
Glutamine at
Concept Introduction:
On electrophoresis, the amino acids which contains net positive charge will move towards the negative electrode and the amino acids which contain net negative charge will move towards positive electrode.
(e)
Interpretation:
Glu-Ile-Val at
Concept Introduction:
On electrophoresis, the amino acids which contains net positive charge will move towards the negative electrode and the amino acids which contain net negative charge will move towards positive electrode.
(f)
Interpretation:
Lys-Gln-Tyr at
Concept Introduction:
On electrophoresis, the amino acids which contains net positive charge will move towards the negative electrode and the amino acids which contain net negative charge will move towards positive electrode.

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Chapter 27 Solutions
Student Study Guide and Solutions Manual for Brown/Iverson/Anslyn/Foote's Organic Chemistry, 8th Edition
- Potential Energy (kJ) 1. Consider these three reactions as the elementary steps in the mechanism for a chemical reaction. AH = -950 kJ AH = 575 kJ (i) Cl₂ (g) + Pt (s) 2C1 (g) + Pt (s) Ea = 1550 kJ (ii) Cl (g)+ CO (g) + Pt (s) → CICO (g) + Pt (s) (iii) Cl (g) + CICO (g) → Cl₂CO (g) Ea = 2240 kJ Ea = 2350 kJ AH = -825 kJ 2600 2400 2200 2000 1800 1600 1400 1200 1000 a. Draw the potential energy diagram for the reaction. Label the data points for clarity. The potential energy of the reactants is 600 kJ 800 600 400 200 0 -200- -400 -600- -800- Reaction Progressarrow_forwardCan u help me figure out the reaction mechanisms for these, idk where to even startarrow_forwardHi, I need your help with the drawing, please. I have attached the question along with my lab instructions. Please use the reaction from the lab only, as we are not allowed to use outside sources. Thank you!arrow_forward
- Hi, I need your help i dont know which one to draw please. I’ve attached the question along with my lab instructions. Please use the reaction from the lab only, as we are not allowed to use outside sources. Thank you!arrow_forward5. Write the formation reaction of the following complex compounds from the following reactants: 6. AgNO₃ + K₂CrO₂ + NH₄OH → 7. HgNO₃ + excess KI → 8. Al(NO₃)₃ + excess NaOH →arrow_forwardIndicate whether the product formed in the reaction exhibits tautomerism. If so, draw the structure of the tautomers. CO₂C2H5 + CH3-NH-NH,arrow_forward
- Draw the major product of this reaction N-(cyclohex-1-en-1-yl)-1-(pyrrolidino) reacts with CH2=CHCHO, heat, H3O+arrow_forwardDraw the starting material that would be needed to make this product through an intramolecular Dieckmann reactionarrow_forwardDraw the major product of this reaction. Nitropropane reacts + pent-3-en-2-one reacts with NaOCH2CH3, CH3CHOHarrow_forward
- Indicate whether the product formed in the reaction exhibits tautomerism. If so, draw the structure of the tautomers. OC2H5 + CoHs-NH-NH,arrow_forwardExplain how substitutions at the 5-position of barbituric acid increase the compound's lipophilicity.arrow_forwardExplain how substitutions at the 5-position of phenobarbital increase the compound's lipophilicity.arrow_forward
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