@shauryasaraswat3871 12 days ago 00:06 Mechanical properties of fluids explained with live experiment. 02:21 Fluids are divided into hydrostatics and hydrodynamics. 06:56 Fluid pressure is proportional to depth and acts in all directions. 08:53 Pressure and area are inversely proportional. 13:06 Derivation of pressure variation with depth in a fluid 15:21 Fluid pressure and forces are at play within a cylinder. 19:17 Water pressure increases with depth 21:10 Equal pressure by fluid in containers 25:17 Pressure of fluid depends only on height 27:26 Pascal's Law states that pressure applied to a closed container with fluid is transmitted equally throughout the container. 31:22 Pascal's law states that pressure is transmitted equally everywhere in a fluid. 33:05 Hydraulic lift operation and incompressible fluid 37:14 Hydraulic lift can easily multiply forces 39:00 Demonstration of Pascal's law using syringes 42:28 Understanding atmospheric pressure and its impact on us 44:26 Atmospheric pressure is equal everywhere 49:11 The relationship between density and pressure in fluids 51:07 Mechanical demonstration of atmospheric pressure and density 54:56 Understanding atmospheric pressure and buoyant force 56:49 Objects float or sink in fluids based on buoyant force 1:01:01 Archimedes' principle explains fluid displacement and buoyant force. 1:03:25 Design objects to displace as much water as possible to increase buoyant force. 1:07:15 Explanation of particle stability and kinetic energy 1:09:14 Surface tension is the property of the liquid. 1:13:27 Surface tension affects the spreading and sticking of particles. 1:15:22 Soap reduces surface tension 1:19:09 Understanding surface energy and tension 1:21:09 Surface energy is stored in a film of fluid when it is stretched. 1:25:07 Surface tension on a curved surface 1:26:51 Understanding access pressure and its impact on liquid and soap bubbles 1:31:09 Discussion on the formula for work done in a liquid drop and soap bubble 1:33:12 The experiment demonstrates the impact of two layers in a soap bubble. 1:37:04 Capillarity is the phenomenon where liquids rise in narrow tubes. 1:39:04 Capillary action and its applications 1:42:33 Capillary action and determination of height using a capillary tube. 1:44:30 Derivation of height pressure formula 1:48:15 Discussing the height formula and ascending property in fluid mechanics 1:50:32 The height of the liquid in a capillary tube is determined by the angle of contact and atmospheric pressure 1:54:48 Explaining the concept of viscosity and its formula 1:57:07 Understanding the concept of viscosity and its impact on fluid mechanics. 2:01:10 Mustard oil flows the fastest due to its low viscosity 2:03:02 Different liquids have different viscosities affecting their flow. 2:07:05 Viscosity is higher in thicker liquids with higher density. 2:08:59 Discussing the power of AT-1 and AT-2 with relation to dimensions 2:12:49 Mechanical properties of fluid and its effects on rainfall 2:14:35 Explaining the concept of laminar flow in liquid mechanics. 2:18:26 Streamline flow is defined by the smooth motion of particles without intersection. 2:20:15 Stream line flow and its impact on velocity 2:23:50 Critical velocity is the threshold for flow transition. 2:25:47 Deriving the formula for critical velocity of liquid flow 2:30:16 Fluid flowing through a pipe follows the principle of continuity. 2:32:03 Explains the equation of continuity and its implications 2:35:55 Understanding unit volume and pressure energy in thermodynamics 2:37:53 Understanding the importance of Bernoulli's theorem in physics. 2:42:39 Bernoulli's theorem explains the energy conservation in fluid flow. 2:44:31 Understanding work done by fluid and energy conservation 2:48:51 Fast moving fluids create low pressure 2:50:53 Demonstrating Bernoulli's theorem with live experiment 2:54:54 Swinging the ball in cricket depends on surface roughness and wind speed. 2:56:43 Fluid mechanics and Bernoulli's theorem explained with real-world examples 3:00:26 Bernoulli's equation relates velocity, pressure, and height in fluid flow. 3:02:20 Calculation of water flow through a pipe
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