TLS Online TPP Program

#Question id: 11355


In the Lotka-Volterra population model for a prey population, dV/dt = rV - cVP, what is the meaning of the last term in the model (-cVP)?

#Unit 10. Ecological Principles
  1. Intrinsic growth rate of the prey population
  2. Intrinsic growth rate of the predator population
  3. Addition of predators as they consume prey
  4. Removal of prey by predators, over and above other causes of death.
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TLS Online TPP Program

#Question id: 27679

#Unit 1. Molecules and their Interaction Relevant to Biology

Which of the following is a computational technique that attempts to determine the unknown structure of a protein

TLS Online TPP Program

#Question id: 27680

#Unit 1. Molecules and their Interaction Relevant to Biology

Prediction of the structure of a protein based only on its chemical and physical properties is done by

TLS Online TPP Program

#Question id: 27681

#Unit 1. Molecules and their Interaction Relevant to Biology

The structural database for the Structural Classification of Proteins is

TLS Online TPP Program

#Question id: 7289

#Unit 1. Molecules and their Interaction Relevant to Biology

The following scheme shows the flowering status of a plant species and the photoperiodism. Which of the following conclusions is most appropriate?

TLS Online TPP Program

#Question id: 68

#Unit 1. Molecules and their Interaction Relevant to Biology

Match the following functional groups given in column I with their respective representatives given in column II.

COLUMN ICOLUMN II
1. Anhydridea. RCOOR
2. Etherb. ROCOCH3
3. Acetylc. ROR
4. Amidod. RCOOCOR
5. Estere. RCONH2

TLS Online TPP Program

#Question id: 73

#Unit 1. Molecules and their Interaction Relevant to Biology

Match the Variation of Reaction Spontaneity (Sign of ΔG) given in Column I with the Signs of ΔH and ΔS given in column II.

COLUMN I

COLUMN II

 

 

 

  ΔH

ΔS

ΔG = ΔH – TΔS

1.

+

a. The reaction is both enthalpically and entropically opposed. It is nonspontaneous (endergonic) at all temperatures.

2.

 −

− 

b. The reaction is enthalpically opposed (endothermic) but entropically favored. It is spontaneous only at temperatures above T = ΔH/ΔS.

3.

+

+

c. The reaction is enthalpically favored but entropically opposed. It is spontaneous only at temperatures below T = ΔH/ΔS.

4.

+

d. The reaction is both enthalpically favored (exothermic) and entropically favored. It is spontaneous (exergonic) at all temperatures.