If a cube of ice is placed in gravity-free space,what happens when the ice melts?

  • A
    It remains in the shape of a cube.
  • B
    It will split into pieces of irregular shapes.
  • C
    It will split into small tiny water droplets.
  • D
    It will form a spherical shape.

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Similar Questions

Formation of bubbles is in Column-$I$ and the pressure difference between them is given in Column-$II$. Match them appropriately.
Column-$I$ Column-$II$
$(a)$ Liquid drop in air $(i)$ $\frac{4T}{R}$
$(b)$ Bubble of liquid in air $(ii)$ $\frac{2T}{R}$
$(iii)$ $\frac{2R}{T}$

$64$ small drops,each of radius $r$ and charge $q$,coalesce to form a single large drop. If the charge is conserved,what is the ratio of the surface charge density of a small drop to that of the large drop?

Which of the following statements are true when two water drops coalesce to form a bigger drop?

An air bubble of radius $0.1\, cm$ is in a liquid having surface tension $0.06\, N/m$ and density $10^3\, kg/m^3$. The pressure inside the bubble is $1100\, N/m^2$ greater than the atmospheric pressure. At what depth $h$ (in $m$) is the bubble below the surface of the liquid? $(g = 9.8\, m/s^2)$

An air bubble of radius $1 \ mm$ is at a depth of $8 \ cm$ below the free surface of a liquid column. If the surface tension and density of the liquid are $0.1 \ N \ m^{-1}$ and $2000 \ kg \ m^{-3}$ respectively, by what amount is the pressure inside the bubble greater than the atmospheric pressure (in $N \ m^{-2}$)? (Take $g = 10 \ m \ s^{-2}$)

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