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Justin Edrik A. Gregorio 5ChEC Second-Order Sytem Determine the response (in time domain) of a manometer to a step change in pressure across the legs of the manometer given the data below and the governing differential equation for the manometer. Data: L = 200cm μ = 0.01g/(cms) ΔP ρg =10 cm g = 980cm/s 2 ρ = 1.0 g/cm 3 D = 0.21cm Using the differential equation below

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Page 1: justinust.files.wordpress.com  · Web viewJustin Edrik A. Gregorio. 5ChEC. Second-Order Sytem. Determine the response (in time domain) of a manometer to a step change in pressure

Justin Edrik A. Gregorio

5ChEC

Second-Order Sytem

Determine the response (in time domain) of a manometer to a step change in pressure across the legs of the manometer given the data below and the governing differential equation for the manometer.

Data: L = 200cm μ = 0.01g/(cms)ΔPρg

=10cm

g = 980cm/s2 ρ = 1.0 g/cm3 D = 0.21cm

Using the differential equation below

Page 2: justinust.files.wordpress.com  · Web viewJustin Edrik A. Gregorio. 5ChEC. Second-Order Sytem. Determine the response (in time domain) of a manometer to a step change in pressure

Justin Edrik Gregorio

5ChEC

Solution to Second Order System