CAT 2023 Daily Practice Questions for 14 October

Rohan Tyagi

Updated On: October 14, 2023 03:30 pm IST

Refer to CAT 2023 Daily Practice Questions for 14 October available here to evaluate the preparations for the upcoming exam. Today's questions are from the Verbal Aptitude and Reading Comprehension section.
CAT 2023 Daily Practice Questions for 14 OctoberCAT 2023 Daily Practice Questions for 14 October

CAT 2023 Practice Questions: The MBA aspirants who have registered for CAT 2023 must now fasten their preparations as less than two months are left to cover the vast syllabus of CAT 2023. All sections of this examination including QA, VARC, or LRDI are important, hence daily practice is the most essential factor. For today, October 14, daily CAT 2023 practice questions for VARC section have been shared here.

Also Read | CAT 2023 Daily Practice Questions for 13 October

CAT 2023 Daily Practice Questions for 14 October

Here are the daily practice problems for candidates preparing for CAT 2023 for 14 October 2023 from previous years' papers to enhance regular preparation: 

Scientists recently discovered that Emperor Penguins—one of Antarctica’s most celebrated species—employ a particularly unusual technique for surviving the daily chill. As detailed in an article published today in the journal Biology Letters, the birds minimize heat loss by keeping the outer surface of their plumage below the temperature of the surrounding air. At the same time, the penguins’ thick plumage insulates their body and keeps it toasty. . . 

The researchers analyzed thermographic images taken over roughly a month during June 2008. During that period, the average air temperature was 0.32 degrees Fahrenheit. At the same time, the majority of the plumage covering the penguins’ bodies was even colder: the surface of their warmest body part, their feet, was an average 1.76 degrees Fahrenheit, but the plumage on their heads, chests and backs were -1.84, -7.24 and -9.76 degrees Fahrenheit respectively. Overall, nearly the entire outer surface of the penguins’ bodies was below freezing at all times, except for their eyes and beaks. The scientists also used a computer simulation to determine how much heat was lost or gained from each part of the body—and discovered that by keeping their outer surface below air temperature, the birds might paradoxically be able to draw very slight amounts of heat from the air around them. The key to their trick is the difference between two different types of heat transfer: radiation and convection.

The penguins do lose internal body heat to the surrounding air through thermal radiation, just as our bodies do on a cold day. Because their bodies (but not surface plumage) are warmer than the surrounding air, heat gradually radiates outward over time, moving from a warmer material to a colder one. To maintain body temperature while losing heat, penguins, like all warm- blooded animals, rely on the metabolism of food. The penguins, though, have an additional strategy. Since their outer plumage is even colder than the air, the simulation showed that they might gain back a little of this heat through thermal convection— the transfer of heat via the movement of a fluid (in this case, the air). As the cold Antarctic air cycles around their bodies, slightly warmer air comes into contact with the plumage and donates minute amounts of heat back to the penguins, then cycles away at a slightly colder temperature.

Most of this heat, the researchers note, probably doesn’t make it all the way through the plumage and back to the penguins’ bodies, but it could make a slight difference. At the very least, the method by which a penguin’s plumage wicks heat from the bitterly cold air that surrounds it helps to cancel out some of the heat that’s radiating from its interior. And given the Emperors’ unusually demanding breeding cycle, every bit of warmth counts. Since [penguins trek as far as 75 miles to the coast to breed and male penguins] don’t eat anything during [the incubation period of 64 days], conserving calories by giving up as little heat as possible is absolutely crucial.

Question 1. All of the following, if true, would negate the findings of the study reported in the passage EXCEPT:

  1. the average temperature of the feet of penguins in the month of June 2008 were found to be 2.76 degrees Fahrenheit.
  2. the penguins’ plumage were made of a material that did not allow any heat transfer through convection or radiation.
  3. the temperature of the plumage on the penguins’ heads, chests and backs were found to be 1.84, 7.24 and 9.76 degrees Fahrenheit respectively. 
  4. the average air temperature recorded during the month of June 2008 in the area of study were –10 degrees Fahrenheit.

Question 2. Which of the following can be responsible for Emperor Penguins losing body heat?

  1. Plumage
  2. Reproduction process
  3. Food metabolism
  4. Thermal convection 

Question 3. Which of the following best explains the purpose of the word “paradoxically” as used by the author?

  1. Keeping a part of their body colder helps penguins keep their bodies warmer
  2. Heat loss through radiation happens despite the heat gain through convection
  3. Heat gain through radiation happens despite the heat loss through convection 
  4. Keeping their body colder helps penguins keep their plumage warmer

Question 4. In the last sentence of paragraph 3, “slightly warmer air” and “at a slightly colder temperature” refer to AND respectively:

  1. the cold Antarctic air which becomes warmer because of the heat radiated out from penguins’ bodies AND the fall in temperature of the surrounding air after thermal convection
  2. the cold Antarctic air whose temperature is higher than that of the plumage AND the fall in temperature of the Antarctic air after it has transmitted some heat to the plumage
  3. the air trapped in the plumage which is warmer than the Antarctic air AND the fall in temperature of the trapped plumage air after it radiates out some heat.
  4. the air inside penguins’ bodies is kept warm because of metabolism of food AND the fall in temperature of the body air after it transfers some heat to the plumage

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