In this post, I am sharing FSC 1st Year Physics Chapter 6 Notes PDF for the students of Intermediate Part 1. This chapter’s name is Fluid Dynamics. Students can download 11th class chapter 6 Fluid Dynamicsn Notes PDF in there laptop or mobile. These Physics Notes are for all the boards working under Punjab Board like Gujranwala Board, Lahore Board, Faisalabad Board, Multan Board, Rawalpindi Board, Sargodha Board, DG Kahn Board, and Sahiwal Board. Here are the complete FSC 1st Year Physics Notes PDF chapterwise.
FSC Part 1 Physics Chapter 6 Fluid Dynamics Notes PDF Download
What is viscosity or fluid friction?
An internal frictional force between different layers of a flowing fluid is called viscosity of fluid.
Vescosity measures how much force is required to slide one layer of the liquid over another layer. Substance that do not flow easily, such as thick tar and honey etc; have large coefficients of viscosity and the substance which flow easily, like water, have small coefficients of viscosity, since liquid and gasses have non zero viscosity.
State stroke law of viscosity.
It states that the drag force F on a spherical object of radius r moving slowly with speed v through a fluid of viscosity given by
F = 6pnrv
at high speed the force is no longer proportional to speed
Define terminal velocity.
The maximum, constant velocity acquired by spherical body falling in a viscous medium when the drag force become equal to its weight is called terminal velocity
Define Bernoulli’s equation.
Bernoulli’s equation relates pressure of fluid to its speed and height when fluid moves through a pipe of varying cross- section and height.
Statement
the sum of pressure the kinetic energy per unit volume and potential energy per unit volume of an ideal fluid remains constant at every point of its path
P + ½ pv2 + pgh = constant
Derivation:
Concider an incompressible, non viscous fluid flowing steadily through a pipe in time t
Work done at upper end:
p1 = pressure at upper end
A1 = area of cross section at upper end
P1A1 = F1 = force on upper end of fluid during time t
x1 = distance travel by the fluid
= F1 x
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