TLS Online TPP Program

#Question id: 18619


which of the following will give not give fluorescence

#SCPH06 I Botany
  1. A is fluorophore, B is fluorophore
  2. A radiator, B is high flourescencet molecule

  3. A is fluorophore, B is Quencher
  4. Both A and B 
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TLS Online TPP Program

#Question id: 556

#I Life Science/ Life Sciences Group – I-V

Which of the following statement is correct to calculate the turnover number of an enzyme,

A) the enzyme concentration.

B) the initial velocity of the catalyzed reaction at [S] >> Km.

C) the initial velocity of the catalyzed reaction at low [S].

D) the Km for the substrate.

TLS Online TPP Program

#Question id: 556

#SCPH05 I Biotechnology

Which of the following statement is correct to calculate the turnover number of an enzyme,

A) the enzyme concentration.

B) the initial velocity of the catalyzed reaction at [S] >> Km.

C) the initial velocity of the catalyzed reaction at low [S].

D) the Km for the substrate.

TLS Online TPP Program

#Question id: 556

#SCPH06 I Botany

Which of the following statement is correct to calculate the turnover number of an enzyme,

A) the enzyme concentration.

B) the initial velocity of the catalyzed reaction at [S] >> Km.

C) the initial velocity of the catalyzed reaction at low [S].

D) the Km for the substrate.

TLS Online TPP Program

#Question id: 556

#SCPH28 | Zoology

Which of the following statement is correct to calculate the turnover number of an enzyme,

A) the enzyme concentration.

B) the initial velocity of the catalyzed reaction at [S] >> Km.

C) the initial velocity of the catalyzed reaction at low [S].

D) the Km for the substrate.

TLS Online TPP Program

#Question id: 557

#SCPH01 Biochemistry

The number of substrate molecules converted to product in a given unit of time by a single enzyme molecule at saturation is referred to as the:

TLS Online TPP Program

#Question id: 557

#I Life Science/ Life Sciences Group – I-V

The number of substrate molecules converted to product in a given unit of time by a single enzyme molecule at saturation is referred to as the: