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Eight mercury droplets having a radius of 1mm

WebFeb 15, 2024 · Data : r = 1 mm = 1 × 10-3 m, T = 0.472 J/m 2. Let R be the radius of the single drop formed due to the coalescence of 8 droplets of mercury. Volume of 8 droplets = volume of the single drop as the volume of the liquid remains constant. ∴ 8 × \(\frac43\) πr 3 = \(\frac43\) πr 3. ∴ 8r 3 = R 3. ∴ 2r = R. Surface area of 8 droplets = 8 ... WebRadius of larger mercury drop, R = 1 cm = 10 − 2 m Surface Tension, T = 32 × 10 − 2 N/m Number of smaller mercury drops, n = 10 6 Let us suppose, radius of smaller mercury …

A mercury drop of radius 10-3 m is broken into 125 equal size droplets …

WebFeb 15, 2024 · Data : r = 1 mm = 1 × 10-3 m, T = 0.472 J/m 2. Let R be the radius of the single drop formed due to the coalescence of 8 droplets of mercury. Volume of 8 … Webr = 0.1 mm = 0.1 × 10-3 m, T = 0.072 N/m. To find: The change in surface energy. Solution: Let R be the radius of the single drop formed due to the coalescence of 27 droplets of … in a world of my own sheet music https://ltcgrow.com

Eight mercury droplets having a radius of 1 mm and …

WebSV2042 1) 52 (0) (43) Eight mercury droplets having a radius of 1 mm and a charge of 0.066 peach merge to have one droplet Its potential is - (A) 2.4 V (B) 1.2 V (C) 3.6V D) … WebMay 20, 2024 · Eight mercury droplets having a radius of 1 mm and a charge of 0.066pC each merge to form one droplet Its potential is a) 2.4 V b) 1.2 V c) 3.6 V d) 4.8 V WebApr 5, 2024 · We can consider a big drop of mercury of radius R. It can split into 1000 droplets of same sized mercury. The radius of the small drop is r. We can find out the … in a world of my own disney

A mercury drop of radius 10-3 m is broken into 125 equal size droplets …

Category:Twenty seven droplets of water, each of radius 0.1 mm coalesce …

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Eight mercury droplets having a radius of 1mm

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WebEight droplets of mercury having same charge and same radius get mixed to form a big drop. 1 capacity of big drop in comparison to small droplet is Q. 1628 77 Electrostatic Potential and Capacitance Report Error WebApr 5, 2024 · We can consider a big drop of mercury of radius R. It can split into 1000 droplets of same sized mercury. The radius of the small drop is r. We can find out the surface area of the big sphere of radius R. The surface area of a sphere can be written as, \[S=4\pi {{R}^{2}}\], where R is the radius of the sphere.

Eight mercury droplets having a radius of 1mm

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WebJEE Main 2024: A mercury drop of radius 10-3 m is broken into 125 equal size droplets. Surface tension of mercury is 0.45 Nm -1. The gain in surface e Web2. A drop with an initial radius of 100 μm falls through a cloud containing 100 droplets per cubic centimeter that it collects in a continuous manner with a collection efficiency of 0.8. If all the cloud droplets have a radius of 10 μm, how long will it take for the drop to reach a radius of 1 mm?

Web2. A drop with an initial radius of 100 μm falls through a cloud containing 100 droplets per cubic centimeter that it collects in a continuous manner with a collection efficiency of 0.8. … WebA drop of mercury of radius 0.2 cm is broken into 8 droplets of the same size. Find the work done if the surface tension of mercury is 435.5 dyn/cm. Maharashtra State Board HSC Science (Computer Science) 12th Board Exam. Question Papers 222. …

WebA drop of mercury of radius 2 mm is split into 8 identical droplets. Find the increase in surface energy. (Surface tension of mercury is \[0.465\ J/{{m}^{2}}\]) [UPSEAT 2002]

WebQuestion. Eight mercury droplets having a radius of 1 mm and a charge of 0.066 PC each merge to form droplet. Its potential is (A) 2.4 V 0 (B) 1.2 V (C) 3.6 v (D) 4.8 V: …

WebJun 22, 2024 · Solution For Eight mercury droplets having a radius of 1 mm and a charge of 0.066pC each merge to form one droplet. Its potential is Eight mercury droplets … in a world of princesses be a maleficentWebEight mercury droplets having a radius of 1 mm and a charge of 0.066 pC each merge to form one droplet. Its potential is. Electrostatic potential. dutterer\u0027s family restaurant littlestownWebApr 2, 2024 · A mercury drop of radius 1 cm in broken into ${10^6}$ droplets of equal size The work done is $\rho = 35 \times {10^{ - 2}}N/m$ A). $4.35 \times {10^{ - 2}}J$ B). $4.35 \times {10^{ - 3}}J$ C). $4.35 \times {10^{ - 6}}J$ D). $4.35 \times {10^{ - 8}}J$ in a world of no corporate taxesWebA-3. 6A mercury drop of radius 1.0 cm is sprayed into 10 droplets of equal size. Calculate the energy expanded. (Surface tension of mercury = 32 × 10–2 N/m). A-4. A film of water is formed between two straight parallel wires each 10 cm long and at separation 0.5 cm. ... A spherical drop of water has 1mm radius. If the surface tension of the ... in a world of our own songWebA mercury drop of radius 1 cm is sprayed into 10 6 droplets of equal size. Calculate the energy expended ( in mJ upto two decimals) if surface tension of mercury is 35 × 10 − 3 N/m . Q. Calculate the energy spent in spraying a drop of mercury of r = 1 c m radius into N = 10 6 droplets all of same size. dutterer\u0027s littlestownWebCapacitance of big drop relative to that of small drop will be \( x... Eight drops of mercury of same radius and having same charge coalesce to form a big drop. dutterer\u0027s family restaurant littlestown paWebr = 0.1 mm = 0.1 × 10-3 m, T = 0.072 N/m. To find: The change in surface energy. Solution: Let R be the radius of the single drop formed due to the coalescence of 27 droplets of mercury. Volume of 27 droplets = volume of the single drop as the volume of the liquid remains constant. ∴ `27 xx 4/3pi"r"^3 = 4/3pi"R"^3` ∴ `27"r"^3 = "R"^3` ∴ ... dutterer\u0027s of manchester corp