Find the below table which shows the task time. The Maximum output of the company is 240 bottles per day and working time for a day is eight hours. Work Station S A B с D E F G H All Cars Car A Car C What is the required number of workstations? Task time (Sec) Car B 60 90 30 40 110 20 40 70
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- The following tasks are to be performed on an assembly line: TASK ABCDEFGH SECONDS 30 Cycle time 16 21 15 17 14 20 9 Number of workstations. TASKS THAT MUST PRECEDE The workday is 8 hours long. Demand for completed product is 900 per day. a. Find the cycle time required to meet the desired output rate. (Round your answer to 1 decimal place.) 51.0 seconds per unit Work Station A B b. What is the theoretical number of workstations required to meet the desired output rate? (Round up yo number.) Task C D E, F d. Balance the line using sequential restrictions and the longest-operating-time rule. (Leave no cells blar wherever required. Round your answers to 1 decimal place.) Idle TimeQRS Corp is designing a product layout for a new product. They plan to use this production line 9 hours a day in order to meet forecasted demand of 600 units per day. Calculate the cycle time in seconds.. Calculate the minimum number of work stations if the sum of the task times is 170 secs Edit Format Table 12pt v Paragraph v BI UAV MacBook Air 80 esc F3 F5 F6 F7 FB F9 F1 F2 F4 @ # $ & 2 3 7 8 W R IIIY この COTailwind, Inc., produces high-quality but expensive training shoes for runners. The Tailwindshoe, which sells for $210, contains both gas- and liquid-filled compartments to provide morestability and better protection against knee, foot, and back injuries. Manufacturing the shoesrequires 10 separate tasks. There are 400 minutes available for manufacturing the shoes inthe plant each day. Daily demand is 60. The information for the tasks is as follows: Task Performance Time (In minutes) Task Must Follow This task A 1 ___ B 3 A C 2 B D 4 B E 1 C.D F 3 A G 2 F H 5 G I 1 E,H J 3/25 I 1. What is the theoretical minimum number of work stations required to satisfy this output rate? 2. Allocate the tasks to work stations taking into consideration the precedence requirements and usingthe LOT rule to break ties between feasible tasks.
- Below is information related to: historical average processing times for Products A and B historical percentage of work center load required to produce Produdcts A and B routing and standard times to produce Product B • the product structure for Product B • a MPS covering 3 periods for Products A and B. MPS in Units End Product 2 Processing Time A 50 45 25 Historical % End Product Hours/Unit wC B. 30 25 30 100 40% A 0.80 200 50% в 1.6 300 10% Routing and Standard Time Data End Product Lot Size Work Center Set Up (Hrs) Run Time/Unit (Hrs) Hrs/Unit B 40 100 1 1.25 D (3 required) D 50 200 0.07 100 200 0.08 F 100 300 0.04 (2 required) A. Develp a rough cut capacity plan for the three work centers based on historical factors. Please fill in the table below with your final calculations. Show your work in the space belov Historical Total Work Center Percentage 1 2 3 Hours 100 200 300 Total Required Capacity Show any work here:kindly do question 5 & 6 pls. thx Kiko Teddy Bear is a manufacturer of stuffed teddy bears. Kiko would like to be able to produce 40 teddy bears per hour on its assembly line. The following information will assist in answering the questions that follow: Task Information for Kiko Teddy Bear Work Element Task Description Immediate Predecessor Task Time (in seconds) A Cut teddy bear pattern None 90 B Sew teddy bear cloth A 75 C Stuff teddy bear B 50 D Glue on eyes C 20 E Glue on nose C 15 F Sew on mouth C 35 G Attach manufacturer’s label B 15 H Inspect and pack teddy bear D,E,F,G 40 Draw a precedence diagram. What cycle time would provide the desired output? What is the maximum possible output of the line?…An assembly line is to be designed to operate 7.5 hours per day and supply a steady demand of 300 units per day. a)assign tasks to workstations using the longest operating time b)suppose demand increase by 10%.how would you react to this?assume you can operatee only 7.5 hours per day TASK PRECEDING TASKS PERFORMANCE TIME(seconds) a - 70 b - 40 c - 45 d a 10 e b 30 f c 20 g d 60 h e 50 i f 15 j g 25 k h,i 20 l j,k 25
- Sue Helms Appliances wants to establish an assem-bly line to manufacture its new product, the Micro Popcorn Popper. The goal is to produce five poppers per hour. The tasks,task times, and immediate predecessors for producing one MicroPopcorn Popper are as follows:TASK TIME (min) IMMEDIATEPREDECESSORSA 10 —B 12 AC 8 A, BD 6 B, CE 6 CF 6 D, Ea) What is the theoretical minimum for the smallest number ofworkstations that Helms can achieve in this assembly line?b) Graph the assembly line, and assign workers to workstations.Can you assign them with the theoretical minimum?c) What is the efficiency of your assignment?A production process at Kenneth Day Manufacturing is shown in Figure S7.9. The drilling operation occurs separately from, and simultaneously with, sawing and sanding, which are independent and sequential operations. A product needs to go through only one of the three assembly operations (the operations are in parallel).a) Which operation is the bottleneck?b) What is the bottleneck time?c) What is the throughput time of the overall system?d) If the firm operates 8 hours per day, 20 days per month, whatis the monthly capacity of the manufacturing process?Three departments- milling (M), drilling (D), andsawing (S)- are assigned to three work areas in Victor Berardis'smachine shop in Kent, Ohio. The number of workpieces movedper day and the distances between the centers of the work areas,in feet, follow. Pieces Moved between Work Areas Each Day lt costs $2 to move I workpiece I foot.What is the cost?
- SITUATION: A company is about to begin production of a new product. The manager of the department that will produce one of the components for the product wants to know how often the machine used to produce the item will be available for other work. The machine will produce the item at a rate of 200 units a day. Eighty units will be used daily in assembling the final product. Assembly will take place five days a week, 50 weeks a year. The manager estimates that it will take almost a full day to get the machine ready for a production run, at the cost of $300. Inventory holding costs will be $10 a year. QUESTION: Suppose the manager decides to increase the run size of the new product. How many additional units would be needed just to accommodate the other job? How much will that increase the total annual cost?Manufacturing Company uses FIFO method of accumulating costs in a two-department process. Materials are introduced at the inception of the process except for a special material which is added in department 2 at 60% completion as to overhead. Inspection is done at the end of the process in both departments. Production data for Department 2 are given below: In process, beginning, (80% labor, 70% overhead)2,000 Transferred in 14,900 In process, ending (40% labor, 20% overhead) 3,000 Normal spoilage 200 Abnormal spoilage (found at 30% completion as to laborand 15% as to overhead due to internal failure) 400 Cost data for the month:In process beginning:Transferred in 15,020 Special materials 1,900 Direct labor 4,388 Overhead 11,044 Current costs:Transferred in 137,080 Special materials 14,030 Direct labor 46,000 Overhead 113,564 The cost of units transferred to finished goods is?The cost of spoilage charged to revenue is?The M–N plant manufactures two different products: M and N. Selling prices and weekly market demands are shown in the following diagram. Each product uses raw materials with costs as shown. The plant has three different machines: A, B, and C. Each performs different tasks and can work on only one unit of material at a time. Process times for each task are shown in the diagram. Each machine is available 2,500 minutes per week. There are no "Murphys" (major opportunities for the system to foul up). Setup and transfer times are zero. Demand is constant. Operating expenses (including labor) total a constant $12,000 per week. Raw materials are not included in weekly operating expenses. a. Which machine is the constraint in this plant? multiple choice Machine A Machine C Machine B Incorrect