TLS Online TPP Program

#Question id: 13052


What would be the effect on the PCR reaction if any of the following circumstances arose: 1) there are no primers in the reaction, 2) there are no dNTPs in the reaction, 3) there is no Taq polymerase in the reaction?

#Zoology
  1. PCR would proceed normally
  2. Non-specific PCR of random templates will occur
  3. Non-specific PCR of random templates will occur
  4. The PCR reaction will not commence
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TLS Online TPP Program

#Question id: 40175

#Applied Microbiology

Which of the following best describes the mechanism of ATP production during glycolysis?

TLS Online TPP Program

#Question id: 40176

#Applied Microbiology

The majority of ATP produced in aerobic cellular respiration comes from ________, whereas ________ produces a smaller amount directly from chemical intermediates.

TLS Online TPP Program

#Question id: 40177

#Applied Microbiology

In the Citric Acid Cycle, the conversion of Succinyl-CoA to Succinate yields a molecule of GTP (which is converted to ATP). This is an example of: 

TLS Online TPP Program

#Question id: 40178

#Applied Microbiology

In the following question, a statement of Assertion (A) is followed by a statement of Reason (R). Choose the correct option.

Assertion (A): Substrate-level phosphorylation can occur in the absence of oxygen (anaerobic conditions).

Reason (R): This process relies on the creation of a proton gradient across the mitochondrial membrane to generate ATP.

TLS Online TPP Program

#Question id: 40179

#Environmental Science

 Which mineral is the softest according to the Mohs Hardness Scale?

TLS Online TPP Program

#Question id: 40180

#Applied Microbiology

Match the metabolic process in Column I with its correct characteristic or location in Column II.

Column IColumn II
A. Glycolysis1. Generates ATP via Oxidative Phosphorylation using oxygen as the final acceptor.
B. Krebs Cycle (Citric Acid Cycle)2. Occurs in the Cytoplasm; produces ATP via Substrate-level phosphorylation.
C. Electron Transport Chain3. Occurs in the Mitochondrial Matrix; produces GTP/ATP via Substrate-level phosphorylation.