The diagram below represents a process where two components are made at stations A1 and A2 (one component is made at A1 and the other at A2). These components are then assembled at station B and moved through the rest of the process, where some additional work is completed at stations C, D, and E. Assume that one and only one person is allowed at each station. Assume that the times given below for each station represent the amount of work that needs to be done at that station by that person, with no processing time variation. Assume that inventory is not allowed to build in the system. A1 0.3 min. E 0.75 min. 0.65 min. 0.60 min. 0.55 min. A2 0.4 min. What is the average hourly output of the process when it is in normal operation? Average hourly output units

MATLAB: An Introduction with Applications
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Chapter1: Starting With Matlab
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The diagram represents a manufacturing process where two components are made at stations A1 and A2 (one component is made at A1 and the other at A2). These components are then assembled at station B and moved through the rest of the process, with additional work completed at stations C, D, and E.

Key Assumptions:
- Only one person is allowed at each station.
- The times listed for each station indicate the amount of work that needs to be completed at that station, with no processing time variation.
- Inventory is not allowed to build in the system.

Diagram Explanation:
- Station A1: 0.3 minutes
- Station A2: 0.4 minutes
- Station B: 0.75 minutes (assembly point for components from A1 and A2)
- Station C: 0.65 minutes
- Station D: 0.60 minutes
- Station E: 0.55 minutes

The illustration shows a linear process flow where the components produced at A1 and A2 converge at B, and the resultant assembly progresses through stations C, D, and E.

Problem Statement:
What is the average hourly output of the process when it is in normal operation?

[Graph/Diagram details: The diagram is a process flowchart showing five stations (A1, A2, B, C, D, E) with respective processing times.]

Calculation:
To find the average hourly output, determine the longest processing time (bottleneck) in this series as this will dictate the maximum output capacity.

Average hourly output = 1 / (Maximum station processing time in hours).

Please calculate based on the given data.
Transcribed Image Text:The diagram represents a manufacturing process where two components are made at stations A1 and A2 (one component is made at A1 and the other at A2). These components are then assembled at station B and moved through the rest of the process, with additional work completed at stations C, D, and E. Key Assumptions: - Only one person is allowed at each station. - The times listed for each station indicate the amount of work that needs to be completed at that station, with no processing time variation. - Inventory is not allowed to build in the system. Diagram Explanation: - Station A1: 0.3 minutes - Station A2: 0.4 minutes - Station B: 0.75 minutes (assembly point for components from A1 and A2) - Station C: 0.65 minutes - Station D: 0.60 minutes - Station E: 0.55 minutes The illustration shows a linear process flow where the components produced at A1 and A2 converge at B, and the resultant assembly progresses through stations C, D, and E. Problem Statement: What is the average hourly output of the process when it is in normal operation? [Graph/Diagram details: The diagram is a process flowchart showing five stations (A1, A2, B, C, D, E) with respective processing times.] Calculation: To find the average hourly output, determine the longest processing time (bottleneck) in this series as this will dictate the maximum output capacity. Average hourly output = 1 / (Maximum station processing time in hours). Please calculate based on the given data.
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