If pressure at half the depth of a lake is equal to 2/3 pressure at the bottom of the lake then what is the depth of the lake
(a) Pressure at half the depth =
Pressure at the bottom =
According to given condition
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If pressure at half the depth of a lake is equal to 2/3 pressure at the bottom of the lake then what is the depth of the lake
(a) Pressure at half the depth =
Pressure at the bottom =
According to given condition
If the radius of a soap bubble is four times that of another, then the ratio of their pressures will be
(a)
A spherical drop of water has radius 1 mm If surface tension of water is N/m difference of pressures between inside and out side of the spherical drop is
(c)
In capillary tube, pressure below the curved surface of water will be
(d)
The pressure inside a small air bubble of radius 0.1 mm situated just below the surface of water will be equal to
[Take surface tension of water and atmospheric pressure = ]
(c) Excess pressure inside the air bubble
Two bubbles A and B are joined through a narrow tube where bubble A is bigger. Then
(a)
So air will flow from B to A i.e. size of A will increase.
Two soap bubbles have different radii but their surface tension is the same. Mark the correct statement
(a) (T= constant)
Hence, the internal pressure of smaller bubble is larger than that of larger bubble.
If the excess pressure inside a soap bubble is balanced by oil column of height 2 mm, then the surface tension of soap solution will be (r = 1 cm and density d = 0.8 gm/cc)
(b)
Due to capillary action, a liquid will rise in a tube, if the angle of contact is
(a) . If is less than 90° then h will be positive
Two parallel glass plates are dipped partly in the liquid of density 'd' keeping them vertical. If the distance between the plates is 'x', surface tension for liquids is T and angle of contact is , then rise of liquid between the plates due to capillary will be
The rise of liquid between two parallel glass plates due to capillary action is given by the formula (2T cosθ)/(xdg), where T is the surface tension, θ is the angle of contact, x is the distance between the plates, d is the density of the liquid, and g is the acceleration due to gravity.
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