TLS Online TPP Program

#Question id: 412


All of the following contribute to the large, negative, free-energy change upon hydrolysis of “high-energy” compounds except:

#Part-A Aptitude & General Biotechnology
  1. electrostatic repulsion in the reactant.

  2. low activation energy of forward reaction.

  3. stabilization of products by extra resonance forms.

  4. stabilization of products by ionization.

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TLS Online TPP Program

#Question id: 11061

#Part-B Specialized Branches in Biotechnology

The pleural pressure of a normal 56-year-old woman is approximately −5 cm H2O during resting conditions immediately before inspiration (i.e., at functional residual capacity). What is the pleural pressure (in cm H2O) during inspiration?

TLS Online TPP Program

#Question id: 11062

#Part-B Specialized Branches in Biotechnology

The alveolar pressure of a normal 77-year-old woman is approximately 1 cm H2O during expiration. What is the alveolar pressure during inspiration (in cm H2O)?

TLS Online TPP Program

#Question id: 11063

#Part-B Specialized Branches in Biotechnology

A man inspires 1000 ml from a spirometer. The intrapleural pressure was −4 cm H2O before inspiration and −12 cm H2O the end of inspiration. What is the compliance of the lungs?

TLS Online TPP Program

#Question id: 11065

#Part-B Specialized Branches in Biotechnology

A liquid-ventilated lung compared to a gas-ventilated lung

TLS Online TPP Program

#Question id: 11066

#Part-B Specialized Branches in Biotechnology

A 22-year-old woman has a pulmonary compliance of 0.2 L/cm H2O and a pleural pressure of −4 cm H2O. What is the pleural pressure (in cm H2O) when the woman inhales 1.0 L of air?

TLS Online TPP Program

#Question id: 11068

#Part-B Specialized Branches in Biotechnology

A patient has a dead space of 150 ml, functional residual capacity of 3 L, tidal volume of 650 ml, expiratory reserve volume of 1.5 L, total lung capacity of 8 L, and respiratory rate of 15 breaths/min. What is the residual volume?