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- Using signavio or any PBM tools and must Use pool and lane and object. Model the following business process at a supplier. After a supplier notifies a retailer of the approval of a purchase order, the supplier can receive an order confirmation, an order change, or an order cancelation from the retailer. It may happen that no response is received at all. If no response is received after 48 h, or if an order cancelation is received, the supplier will cancel the order. If an order confirmation is received within 48 h, the supplier will process the order normally. If an order change is received within 48 h, the supplier will update the order and ask again the retailer for confirmation. The retailer is allowed to change an order at most three times. Afterwards, the supplier will automatically cancel the order.2.10. Compute the long-term average throughput, cycle time and x-factors for this factory for fixed WIP levels of 1 through 5 for the four machine serial flow factory model below where the constant processing times are listed on the machines. As- sume that the factory starts with the configuration (N,0,0,0) for fixed WIP level N and no processing has occurred on any of the active jobs. out 2 3 new(Can someone help me with this just need a P&ID solution meeting the requirements and explanation. thx) INSTRUCTION: Given three bare processes develop a control system using feedbackand feedforward concept/principle. Your output is a process and instrumentationdiagram (P & ID) using ISA's Instrument Identification and Symbols standards withexplanation. PROCESS 1:Cold liquid continuously flow in a tank where its temperature is maintained at 90° C.Steam passes through the tubing which supplies energy for heating. Requirements: One feedback solution One feedforward solution PROCESS 2: The liquid level inside the tank is regulated at a value of 3.0 m on a condition ofcontinuous liquid inflow and outflow. Requirements: Two feedback solutions One feedforward solution PROCESS 3: Product is charged in a closed, jacketed reactor where it is stirred. The reactortemperature is controlled through the uninterrupted flow of coolant in the…
- Suppose that four machines, 1, 2, 3, and 4 have been identified as belonging in a Group Technology (GT) machine cell. 50 parts enter the machine grouping at machine 3, 20 parts leave afterprocessing at machine 1, and 30 parts leave after machine 4. Determine a logical machine arrangement through cluster analysis. Note: Use Cluster analysis only to solve this.Speed reduction, either through gearing or belt-pulley constructs, is an important element in motion system design. Similarly, converting rotary motion to linear motion is an important consideration. Considering a printer system driven by a stepper motor with 200 steps per revolution, construct a table that shows the relationships for: a. Position resolution of the print head vs. angular position of the motor. This translates to addressable print dots per mm vs. step angle. b. Print head speed (mm/S) vs. motor speed (Steps/S with rpm also noted) C. Frictional load at the print head (mN) vs. reflected torque at the motor (mNM) Mass of the print head vs. reflected inertia to the motor d. Use GR for Speed Reduction, r (mm) for the radius of the drive pulley, and m (grams) for print-head mass.. Belt Actuator Load Drive Pulley Secondary Pulley Linear Guide Belt Primary Pulley Motor= Consider a four aisle AS/RS in which an S/R machine is used for each aisle. The length of the storage aisle 85 m and its height = 14 m. Suppose horizontal and vertical speeds of the S/R machine are 61 m/min and 23 m/min, respectively. The S/R machine requires 20 s to accomplish a P&D operation. The aisles in the AS/RS will be organized to follow a class-based dedicated storage strategy. There will be two classes, according to activity level. The more active stock is stored in the half of the rack system that is located closest to the input/output station, and the less active stock is stored in the other half of the rack system farther away from the input/output station. Within each half of the rack system, random storage is used. The more active stock accounts for 80% of the transactions, and the less active stock accounts for the remaining 20%. Assume that system utilization = 90%, and the number of single-command cycles = the number of dual-command cycles. Determine the throughput…
- The three-station work cell at Pullman Mfg., Inc. is illustrated in the figure below. It has two machines at station 1 in parallel (i.e., the product needs to go through only one of the two machines before proceeding to station 2). 30 min/unit Station 1 Machine A Station 2 Station 3 Station 1 3 min/unit 2 min/unit Machine B 30 min/unit a) The throughput time is minutes (enter your response as a whole number). b) The bottleneck time of this work cell is minutes per unit (enter your response as a whole number). c) is the bottleneck station d) If the firm operates 8 hours per day, 6 days per week, the weekly capacity of this work cell is units (enter your response as a whole number).The main reason to do Design for Manufacturing (DFM) is? O a. To predict costs O b. To improve the design of the products Oc To predict time O d. To estimate cost evaluation for further system analysis:Consider the following instance of the two-machine job shop with the makespan as objective (J2 || Cmax). Job 2 3 6. 7. 8 1. 4 P1j 12 3 4 10 3 P2j 3 8 7 3 6. 11 Route Mi-> M1-> M2-> M1-> M2-> M2-> M1 M2 M2 М2 M1 M2 M1 M1 1. Apply the shifting bottleneck heuristic to this two-machine job shop. 2. Apply the SPT(1)-LPT(2) heuristic to this two-machine job shop. 3. Compare the schedules found under (1), (2). 2.
- Three machines are used in a group-technology cell to process a family of five parts. Thetable below lists production quantities (Qj), production times (Tpij), and machine fractionsfor each family member (fij). Part E requires a changeover time of 5 min on each machine soit is produced in batches of 5 parts. Nonoperation times (Tno) are the same for all parts andmachines: 25 min per machine. Determine (a) average hourly production rate for the cell,(b) utilization of each machine and average utilization of the cell, (c) manufacturing leadtime, and (d) work-in-process. A spreadsheet calculator is recommended for this problem1500 words with simple cad model please Your challenge is to 1. identify a current or future energy need 2. define the problem by exploring the context 3. develop a solution to the problem using energy harvesting 4. develop and evaluate a detailed concept of your solution 1. Business case (who are the investors, who will be the buyers and product have an impact on the existing market) 2. Market research and evaluation/feasibility of proposed solution 3. Risk assessment and mitigation 4. Rough sketches, CAD models and (or) animations/images to dem ideasPlease follow the instructions and the requirements according to the pictures above and I kinda need the solution quickly. The language of the code is in Matlab, thank you in advance.