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- Using AutoCAD, draw the following image using object snap modes step by stepTask 8 - Induction Systems In order for combustion to take place an induction system is required to feed fuel and air into the cylinder of an engine. To improve efficiency and performance spark ignition (SI) engines are now adopting compression ignition (CI) engine technology by injecting fuel directly into the cylinder just before the point of ignition however these engines still require an air induction system. Carburettors: before fuel injection technology had been fully developed carburettors (carbs) were used to create a fuel/air ratio at different engine speeds and loads. A cold start facility was also fitted albeit manually operated. The demand for more performance has meant the fixed choke carb' was no longer suitable. More complex carbs' were developed (twin choke) as well as variable choke (constant depression) carbs which used engine vacuum (during throttle opening) to vary the size of choke according to operating requirements.P Don't upload image please
- Provide the allocation List Draw the Grafcet and obtain the grafcet equation Develop the ladder programming from the grafcet III. Description of the cycle: When the start push button is pressed the box motor conveyer is turned on until the box reaches the sensor for box. With box in position, the apple motor conveyor is turned ON and the number of apples is counted using an apple sensor. When the apple count value is 10, turn off the apple conveyor motor. Turn on the box conveyor again to move the box and when the next box arrives in the position then reset the apple counter. A schematic sketch of the automation system is provided in figure 1. apple motor conveyor Sensor for apples box motor conveyor II. I. Sensor for box CONTROL PANEL START STOPA pick and Place machine is being used to transfer a box. The arm is extended (out) by energizing a solenoid valve; when the valve is de-energizes, the arm retracts (in). In the same way, a second valve closes the grip (when energized) or opens the grip (when de-energized). Here's a diagram of this "machine": Grip Air Cylinder Grip open Grip Closed Box Arm Air Cylinder Arm In Arm Out The system is really slow... it actually takes 3-4 seconds for the arm to fully extend. An engineer created the below diagram. Start Pressed Time (seconds) Box Falls - 1 -2 -3 - 4 - 5 -6 –7 -8 – 9 – 10 Extend Arm Close Grip Question (finally!). Which statement is completely true regarding this design? It uses the Master Clock scheme. Given this diagram, the arm will probably start to retract before the grip fully closes. O If the arm takes 4 seconds to retract (return), the box will be dropped "mid-flight" It uses the Domino Scheme. Things can't happen in the wrong sequence. It uses the Master Clock…Which kernel is used by Solidworks? ParaSolid ACIS Open CASCADE SpaVal
- Plz solve within 40 min I vill upvote and vill give positive feedback thank youFind the X and Y from the flash column given below Pre-heater Y. OL X-non volatile, Y-more volatile O II. X-non volatile, Y-less volatile OIL X-less volatile. Y- more volatile Windowsb Click Sae and Submit to save and submit. Click Save All Answers to save all answers13) Write a program to implement the process illustrated in the figure below. The sequence of operation is to be as follows: • Normally open start and normally closed stop pushbuttons are used to start and stop the process. • When the start button is pressed, solenoid A energizes to start filling the tank. • As the tank fills, the empty level sensor switch closes. • When the tank is full, the full level sensor switch closes. • Solenoid A is de-energized. • The agitate motor starts automatically and runs for 3 min to mix the liquid. 15 • When the agitate motor stops, solenoid B is energized to empty the tank. • When the tank is completely empty, the empty sensor switch opens to de-energize solenoid B • The start button is pressed to repeat the sequence. SOL A Motor Full sensor switch Empty sensor switch +SOL B Start/stop control station