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Question 3 Air flows through the Venturi tube that discharges to the atmosphere as shown in the figure. If the flow rate is large enough, the pressure in the constriction will be low enough to draw the mercury from the tank up into the tube section I section 2 A2 ait discharges into the tank is open to the 3.1 Show (from first principles) that the flowrate, Q, can be calculated by the following equation (15) PH 3.2 (1) What is the pressure at section 1? Assume the air flow is frictionless. Determine the height which mercury from the tank is drawn up the pipe if Q- 10.0 m3/s A1 0.4 m2 A2 0.15 m2 Take the density of mercury to be 13500 kg/m would still not be able to reproduce the results calculated in 3.3 above 3.4.1 Would the height of mercury in the actual experiment be higher or lower 3.3 3.4If you conduct an experiment using a set-up that is identical to that above, you than that calculated in 3.3? 3.4.2 Explain your answer in 3.4.1

Please answer and don't just copy previous work with incorrect information. Please answer all questions.Struggling with 3.4 the most.Thank you

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