TLS Online TPP Program

#Question id: 15597


The iteration formula of Newton-Raphson method for finding roots of the equation f(x) = 0 is 


#Part-B Specialized Branches in Biotechnology
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TLS Online TPP Program

#Question id: 19174

#Part-A Aptitude & General Biotechnology

Which of the following cannot be used as adsorbent in Column adsorption chromatography?

TLS Online TPP Program

#Question id: 310

#Part-B Specialized Branches in Biotechnology

Ionic bonds easily form when electron when ionization energy of the metallic atom is _____ comparatively.

TLS Online TPP Program

#Question id: 15370

#Part-B Specialized Branches in Biotechnology

Laplace Transform of  cosine wave Function coswt is: 

TLS Online TPP Program

#Question id: 12960

#Part-B Specialized Branches in Biotechnology

The Norway rat (Rattus Norvegicus), a widespread pest, was controlled for about a decade by the anticoagulant warfarin. This chemical substance, placed in food pellets, is absorbed by the intestinal tract and inhibits the clotting of blood. After a population decline for about 10 years, rat populations increased and stabilized. In one European population, as illustrated in the graph below, the percentage of rats resistant to warfarin has remained fairly stable over a number of years.

Resistance to warfarin is governed by a dominant autosomal gene, R. More than 15 percent of the resistant animals are heterozygous at this locus (Rr). The table below indicates the response to warfarin and relative reproductive fitness of individuals that are homozygous or heterozygous for the dominant gene (R). The RR individuals have a 20-fold increase in vitamin K requirement over individuals.

Fitness is a measure of the reproductive success of a particular genotype. The highest fitness is 1.00.
Which of the following is most likely correct concerning the gene for resistance to warfarin? 

TLS Online TPP Program

#Question id: 3018

#Part-B Specialized Branches in Biotechnology

In the growth curve of a bacteria population, the bacteria are rapidly increasing in number in the