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  3. 5 consider figure 2 and the vade to q block...

Question: 5 consider figure 2 and the vade to q block...

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5. Consider Figure 2 and the Vade to Q block. a. What allows us to use the following linear relationship between flow rate Q and ADC input voltage Vadc for the Transfer Function of the Vade to Q block? b. Determine K and Qo for the linear Transfer Function of the Vade to Q block given Vade ranges from 1 to 5V and Q ranges from 0.5 to 5.0GPM

FC VisSim Program on Workstation ComputerVade toHMI p to Vdaci FC Analog IN Analog OUT DAQ DAQ input port ADC DAC output port 005 0-5V Vadc 1-5Vv dac 0-5V DAC output (V) p (% of range) 43 cho Analog Devi Voltage ADC input (V) Analog Dev1 measured flow rate (GPM) ch 0 Voltage Figure 2. VisSim HMI programming for this lab. The p to Vdac block converts % of range p to a DAC output voltage. The Vadc to Q block converts ADC input voltage to the flow rate measurement Q

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