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16. Frage
You want to insert an operation at a certain time on a work center in the graphical planning table. The planning direction is forward. The planning direction is forward. The desired dispatching time coincides with an operation that has previously been dispatched, how does the insertion take place?
Antwort: D
Begründung:
The graphical planning table is a tool for capacity planning and scheduling that displays the operations and the work centers in a time-oriented view. You can use the graphical planning table to create, change, or dispatch operations manually or automatically. The planning direction determines whether the operations are scheduled from the start date or the finish date of the order. If the planning direction is forward, the operations are scheduled from the start date of the order1.
If you want to insert an operation at a certain time on a work center in the graphical planning table, and the planning direction is forward, and the desired dispatching time coincides with an operation that has previously been dispatched, the insertion takes place as follows:
The new operation is inserted at the desired time; the previously dispatched operation is moved backward (B): This is the correct answer. The system inserts the new operation at the specified time and shifts the previously dispatched operation to a later time, so that the sequence and the capacity requirements of the operations are maintained. The system also adjusts the start and finish dates of the order and the subsequent operations accordingly2.
The other options are not correct for the following reasons:
The new operation is inserted at the desired time; the previous dispatched operation is moved forward (A): This is not correct. The system does not move the previously dispatched operation to an earlier time, as this would violate the planning direction and the capacity constraints of the work center. The system only moves the previously dispatched operation to a later time, as explained in option B.
The previously dispatched operation stays as is; the new operation is inserted after the dispatched operation (C): This is not correct. The system does not insert the new operation after the previously dispatched operation, as this would not match the desired dispatching time specified by the user. The system inserts the new operation at the desired time and moves the previously dispatched operation backward, as explained in option B.
The previously dispatched operation stays as is; the new operation is inserted before the dispatched operation (D): This is not correct. The system does not insert the new operation before the previously dispatched operation, as this would violate the planning direction and the capacity constraints of the work center. The system inserts the new operation at the desired time and moves the previously dispatched operation backward, as explained in option B.
17. Frage
You want to create a production order. What methods can you use?
Note: There are 2 correct answers to this question.
Antwort: A,B
18. Frage
Which time elements are relevant for lead time scheduling of a production order? Note:
There are 2 correct answers to this question.
Antwort: A,B
Begründung:
Lead time scheduling is a method of scheduling production orders that calculates the start and finish dates of each operation based on the operation duration, interoperation time, and other time elements. The time elements that are relevant for lead time scheduling of a production order are:
Setup time: The time required to prepare the work center for the operation, such as changing tools, adjusting machines, or cleaning the work area.
Processing time: The time required to perform the operation, such as machining, assembling, or testing the product.
Teardown time: The time required to restore the work center to its original state after the operation, such as removing tools, resetting machines, or disposing of waste.
Interoperation time: The time between two consecutive operations, such as transportation, waiting, or inspection time.
Float before production: The time buffer before the scheduled start date of the production order, which can be used to compensate for delays or changes in the production plan.
Float after production: The time buffer after the scheduled finish date of the production order, which can be used to compensate for delays or changes in the production plan.
The opening period and the total replenishment lead time are not relevant for lead time scheduling of a production order. The opening period is a parameter that defines the earliest possible start date of a production order, based on the material availability date and the planning time fence. The total replenishment lead time is a parameter that defines the total time required to procure or produce a material, from the time the requirement is identified until the time the material is available for use.
19. Frage
How can a material availability check be triggered automatically for a production order? Note: There are
2 correct answers to this question.
Antwort: A,C
20. Frage
Which master data fields can have an impact on whether MRP creates planned orders or purchase requisitions for a material?
Note: There are 2 Correct answers to this question?
Antwort: B,D
Begründung:
The master data fields that can have an impact on whether MRP creates planned orders or purchase requisitions for a material are:
MRP type: The MRP type is a parameter that defines how a material is planned by MRP. Depending on the MRP type, MRP can create different types of procurement proposals for a material. For example, if the MRP type is PD (MRP), MRP can create either planned orders or purchase requisitions, depending on the procurement type of the material. If the MRP type is VB (Reorder Point Planning), MRP can only create purchase requisitions, regardless of the procurement type of the material.
Procurement type: The procurement type is a parameter that defines how a material is procured, either internally or externally. Depending on the procurement type, MRP can create different types of procurement proposals for a material. For example, if the procurement type is E (External Procurement), MRP can only create purchase requisitions for a material. If the procurement type is X (Both Procurement Types Possible), MRP can create either planned orders or purchase requisitions, depending on the source of supply determination.
The master data fields that do not have an impact on whether MRP creates planned orders or purchase requisitions for a material are:
MRP groups: The MRP groups are parameters that allow you to group materials with similar planning characteristics and assign them common MRP settings, such as planning horizon, lot-sizing procedure, or planning calendar. The MRP groups do not directly affect the type of procurement proposals created by MRP, but they can influence the quantity and timing of the requirements and receipts.
Material type: The material type is a parameter that defines the attributes and properties of a material, such as valuation class, price control, or account determination. The material type does not affect the type of procurement proposals created by MRP, but it can influence the valuation and accounting of the material movements.
21. Frage
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