TLS Online TPP Program

#Question id: 39688


Assertion (A): Standard deviation gives a better idea of data variability than range.

Reason (R): Standard deviation considers deviation of each observation from the mean.

Choose the correct option:

#Zoology
  1. A and R are true, and R explains A
  2.  A and R are true, but R does not explain A
  3. A is true, R is false
  4. A is false, R is true
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TLS Online TPP Program

#Question id: 32520

#Biochemistry


 Column 1 Column 2
 (a) the electron donor 1. NADH
 (b) the electron acceptor 2. E-FMN
 (c) the conjugate redox pair 3. NAD+/NADH 
 (d) the reducing agent
 (e) the oxidizing agent
Match the following 

TLS Online TPP Program

#Question id: 32521

#Biochemistry

Match the following

Column 1Column 2
 a. Abundant NADH and O2 , but cyanide added 1. all carriers become reduced
 b. Abundant NADH, but O2 exhausted 2. all carriers become oxidized. 
 c. Abundant O2 , but NADH exhausted 3. cytochrome c oxidized.
 d. Abundant NADH and O2

TLS Online TPP Program

#Question id: 32521

#Biochemistry

Match the following

Column 1Column 2
 a. Abundant NADH and O2 , but cyanide added 1. all carriers become reduced
 b. Abundant NADH, but O2 exhausted 2. all carriers become oxidized. 
 c. Abundant O2 , but NADH exhausted 3. cytochrome c oxidized.
 d. Abundant NADH and O2

TLS Online TPP Program

#Question id: 32524

#Biochemistry

Which of the following sequential reactions correctly represent(s) 
a. NADH dehydrogenase → Ubiquinone → Cytochrome bc1 → Cytochrome c → Cytochrome c oxidase
b. NADH dehydrogenase → Succinate dehydrogenase → Ubiquinone → Cytochrome c → Cytochrome bc1 → Cytochrome c oxidase
c. NADH dehydrogenase → Ubiquinone → Alternative oxidase
d. NADH dehydrogenase → Alternative oxidase → Ubiquinone

TLS Online TPP Program

#Question id: 32940

#Biochemistry

Match the antimicrobial agents in group I with their category/mode of action in group II. 


TLS Online TPP Program

#Question id: 33430

#Biochemistry

The energetic cost of activating a fatty acid is equivalent to two ATP, and the net gain per molecule of palmitate is