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Oracle 1z0-1075-24 Exam Syllabus Topics:
Topic
Details
Topic 1
- Executing Production: This section measures the proficiency of production managers in key aspects of production execution, including outside processing. It covers identifying functions in the dispatch list, reporting production and orderless transactions, and reviewing production transactions and product genealogy.
Topic 2
- Using Reporting and Analytics for Manufacturing: This section targets manufacturing analysts and explores basic transaction and work order reporting, along with setting up Business Intelligence (BI) and Oracle Transactional Business Intelligence (OTBI) for manufacturing analytics. These skills are necessary for producing insightful reports and analyzing manufacturing performance to drive data-informed decisions.
Topic 3
- Costing and Inventory Foundations: This section is aimed at inventory managers and cost accountants, focusing on common inventory configurations and key aspects of managerial and cost accounting. A solid understanding of these concepts is fundamental for effectively managing inventory and controlling costs within a manufacturing environment.
Topic 4
- Setting up Manufacturing Elements: This part of the exam assesses the expertise of manufacturing professionals and focuses on the core functionalities of Functional Setup Manager and Simplified Setup. It includes configuring common elements, resources, operations, and work centers, as well as setting plant parameters and managing security.
Topic 5
- Managing Projects Enabled SCM: This part of the exam evaluates the competencies of project managers in supply chain management and covers essential projects-enabled SCM configurations. It involves managing project-enabled work orders, which is crucial for aligning project management with manufacturing and supply chain processes.
Topic 6
- Managing Work Orders: This portion of the exam evaluates the skills of production and manufacturing managers, emphasizing the functionalities within the Work Execution Work Areas. It includes creating and modifying work orders for both standard and non-standard manufacturing, with serialized production included.
Oracle Manufacturing Cloud 2024 Implementation Professional Sample Questions (Q41-Q46):
NEW QUESTION # 41
A Production Operator is executing a work order at your plant. After completing move transactions, they notice that they have performed some incorrect move operations, including incorrect scrap and reject transactions.
They must perform a reverse transaction to correct the errors. The operations are not count point-enabled and not auto-charged.
Which four transactions are required to correct this situation?
- A. Reverse material issued to a work order.
- B. Reverse from Scrap to Ready.
- C. Reverse the product at the last operation.
- D. Reverse at an operation.
- E. Reverse from Reject to Ready.
- F. Reverse resources charged to a work order.
Answer: A,B,D,E
Explanation:
When correcting incorrect move operations such as scrap and reject transactions, and the operations are not count point-enabled and not auto-charged, multiple reverse transactions are required:
Reverse material issued to a work order: This is required to correct any incorrect material that was issued to the work order initially.
Reverse at an operation: This transaction allows the production operator to reverse an incorrect operation move to return the product to the previous step.
Reverse from Scrap to Ready: If the operator incorrectly marked an item as scrap, this transaction moves it back to a ready state for further processing.
Reverse from Reject to Ready: This transaction is used to reverse any items incorrectly marked as rejected back to a ready status.
Incorrect options:
Reverse the product at the last operation (E) and Reverse resources charged to a work order (F) are not necessary since the operations are not count point-enabled and not auto-charged.
NEW QUESTION # 42
A Manufacturing Engineer in a plant is creating an alternate manufacturing process for an item using its existing work definitions. After copying from the existing work definition, WD1, to the alternate work definition, WD2, the engineer finds that the operation items were not copied in the alternate manufacturing process WD2.
What is the reason for this?
- A. Item and Structure Name in the existing WD1 were retained in the new WD2 during creation.
- B. Item and Structure Name were changed in the new WD2 during creation.
- C. Production Priority was not populated in the new WD2 during creation.
- D. Start Date was not populated in the new WD2 during creation.
Answer: B
Explanation:
When creating an alternate work definition (WD2) by copying from an existing one (WD1), if the Item and Structure Name were changed during the creation of WD2, the operation items would not be copied. This is because operation items are tied to specific item structures. Changing the structure results in a disconnect between the original operation items and the new work definition.
Item and Structure Name are critical in ensuring that the operation items (components and materials) are transferred when copying work definitions. If these names are changed, the system does not assume the same items should be used.
NEW QUESTION # 43
In a Manufacturing Cloud implementation, users are finding it difficult to track information about work orders executed across various work centers.
Which three information types in the Work Order Traveler can help users in this situation?
- A. Item on-hand quantity
- B. Work definition details
- C. Reservation against sales orders
- D. Hard pegging of items
- E. Product serial Information
Answer: B,C,E
Explanation:
The Work Order Traveler in Oracle Manufacturing Cloud provides detailed information about work orders to help users track and manage work orders across various work centers. The following types of information are especially useful:
Work definition details (D): This provides detailed information about the operations and resources required to complete the work order, helping users understand the manufacturing process and requirements.
Product serial information (E): Tracking serial numbers for products is critical, especially in industries where traceability and product lifecycle management are important.
Reservation against sales orders (A): This information links work orders to specific sales orders, providing clarity on how the work order aligns with customer demand.
Incorrect options:
Hard pegging of items (B) and Item on-hand quantity (C) are not typically tracked through the Work Order Traveler report, as this report focuses more on the work order's execution rather than inventory management.
NEW QUESTION # 44
Your customer is a light assembly manufacturing company that doesn't require shop floor control. A Manufacturing Engineer wants to generate a work definition automatically for some items, and wants to eliminate the explicit maintenance of work definitions.
Which three steps must they perform and verify in the Work Definition area?
- A. Ensure there is only one default standard operation at any point in time.
- B. Select a resource to be used in automatic work definition by enabling the Default attribute for automatic work definition.
- C. Ensure the item is a standard item with a secondary item structure.
- D. Ensure the predefined work definition name ORA_MAIN is active.
- E. Select a standard operation to be used in automatic work definition by enabling the Default attribute for automatic work definition.
Answer: B,D,E
Explanation:
In light assembly manufacturing environments where shop floor control is not required, a Manufacturing Engineer can automate the creation of work definitions to streamline production processes. The following steps must be performed and verified:
Select a resource to be used in automatic work definition by enabling the Default attribute. This ensures that the system can automatically assign resources to the work definition without manual intervention.
Ensure the predefined work definition name ORA_MAIN is active, as this serves as the template for automatically generating work definitions in the system.
Select a standard operation for use in automatic work definition, also by enabling the Default attribute. This ensures that the system knows which operations to include in the work definitions.
Incorrect steps:
C: Secondary item structure is not relevant for automatic work definitions.
D: There can be multiple default operations, so it's not necessary to limit it to one.
NEW QUESTION # 45
Which three statements are true about managing Units of Measure?
- A. A unit of measure conversion is a mathematical relationship between two different units of measure.
- B. A unit of measure standard conversion specifies the conversion factor by which the unit of measure is equivalent to the unit of measure class.
- C. You must define the unit of measure class with a base unit of measure.
- D. If you want to transact items in units of measure that belong to classes other than their primary UOM class, you must define conversions between the base units of measure in different UOM classes.
- E. Conversions between classes are unique for each item; the conversion rate varies for intraclass units of measure.
Answer: A,C,D
Explanation:
In Oracle Manufacturing Cloud, managing Units of Measure (UOM) is critical to ensuring that transactions, measurements, and conversions are handled accurately. Below is a detailed explanation of the correct statements:
Statement A: You must define the unit of measure class with a base unit of measure - This is a fundamental setup in Oracle Manufacturing Cloud. Every UOM class must have a base unit of measure defined because it serves as the reference for all conversions within the class. The base UOM acts as a standard, and all other UOMs within the class are defined relative to it.
Reference:
Statement B: If you want to transact items in units of measure that belong to classes other than their primary UOM class, you must define conversions between the base units of measure in different UOM classes - This is true. If an item's UOM belongs to one class, but you need to transact in another UOM from a different class, a conversion must be defined between the base UOMs of the two classes. This ensures seamless inter-class transactions and measurement consistency.
Statement E: A unit of measure conversion is a mathematical relationship between two different units of measure - UOM conversions in Oracle Cloud are defined mathematically, typically by specifying a conversion factor. This relationship is used by the system to automatically convert quantities between different units of measure, whether for inter-class or intra-class conversions.
Incorrect Statements:
Statement C: A unit of measure standard conversion specifies the conversion factor by which the unit of measure is equivalent to the unit of measure class - This statement is incorrect because a standard conversion relates two UOMs directly, not between a UOM and the class itself. Conversions operate between specific UOMs, not between a UOM and its class.
Statement D: Conversions between classes are unique for each item; the conversion rate varies for intraclass units of measure - This is not accurate because conversions between UOM classes are not unique for each item. Once a UOM conversion is established between classes, it applies globally unless there are specific item-level conversions.
This ensures a consistent approach to defining, transacting, and converting units of measure across different manufacturing and inventory processes within Oracle Manufacturing Cloud.
NEW QUESTION # 46
......
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