Home
Class 12
PHYSICS
If a bigger drop of liquid at temperatur...

If a bigger drop of liquid at temperature t, breaks up into number of small droplets, then what is temperature of the droplests ? (Assume bigger drop is isolated from its surroundings )

A

Equal to t

B

Greater than t

C

Less that t

D

Either (a),(b) and (c) dpending on surface tension of liquid

Text Solution

Verified by Experts

Promotional Banner

Topper's Solved these Questions

  • FLUID MECHANICS

    BITSAT GUIDE|Exercise BITSAT Achives|15 Videos
  • ELECTROMAGNETIC INDUCTION

    BITSAT GUIDE|Exercise All Questions|33 Videos
  • GAUSS LAW AND ELECTRIC POTENTIAL THEORY

    BITSAT GUIDE|Exercise BITSTAT ARCHIVES|4 Videos

Similar Questions

Explore conceptually related problems

A liquid drop at temperature t, isolated from its surroundings, breaks into a number of droplets. The temperature of the droplets will be

A drop of mercury has some charge. If it breaks up into a number of indentifal droplets, the electrostatic energy of the system will

If a drop of liquid breaks into smaller droplets, it result in lowering of temperature of the droplets. Let a drop of radius R, breaks into N small droplets each of radius r. Estimate the drop in temperature.

A liquid drop of radius R is broken up into n small droplets. The work done is proportional to

1000 tiny mercury droplets coalesce to form a bigger drop .In this process , the temperature of the drop

A 100 g cube of aluminium is removed from a bath of boiling water and dropped in a bath of room temperature water (2.00 litres at 20.0^(@)C ). What is the final temperature of the water assuming heat loss to the surroundings is negligible? The specific heat capacity of aluminium is 897 J/kg .^(@)C .

When a big drop of water is formed from n small drops of water, the energy oss is 3E, where, E is the energy of the bigger drop. If R is the radius of the bigger drop and r is the radius of the smaller drop then number of smaller drops (n) is?

A number of small drops of mercury coalesce isothermally to from a single drop. What will be the effect on temperature of the drop?