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NEW QUESTION: 1
Note: This question is part of a series of questions that use the same scenario. For your convenience, the scenario is repeated in each question. Each question presents a different goal and answer choices, but the text of the scenario is exactly the same in each question in this series.
You have a database that contains the following tables: BlogCategory, BlogEntry, ProductReview, Product, and SalesPerson. The tables were created using the following Transact SQL statements:

You must modify the ProductReview Table to meet the following requirements:
* The table must reference the ProductID column in the Product table
* Existing records in the ProductReview table must not be validated with the Product table.
* Deleting records in the Product table must not be allowed if records are referenced by the ProductReview table.
* Changes to records in the Product table must propagate to the ProductReview table.
You also have the following database tables: Order, ProductTypes, and SalesHistory, The transact-SQL statements for these tables are not available.
You must modify the Orders table to meet the following requirements:
* Create new rows in the table without granting INSERT permissions to the table.
* Notify the sales person who places an order whether or not the order was completed.
You must add the following constraints to the SalesHistory table:
* a constraint on the SaleID column that allows the field to be used as a record identifier
* a constant that uses the ProductID column to reference the Product column of the ProductTypes table
* a constraint on the CategoryID column that allows one row with a null value in the column
* a constraint that limits the SalePrice column to values greater than four Finance department users must be able to retrieve data from the SalesHistory table for sales persons where the value of the SalesYTD column is above a certain threshold.
You plan to create a memory-optimized table named SalesOrder. The table must meet the following requirements:
* The table must hold 10 million unique sales orders.
* The table must use checkpoints to minimize I/O operations and must not use transaction logging.
* Data loss is acceptable.
Performance for queries against the SalesOrder table that use Where clauses with exact equality operations must be optimized.
You need to enable referential integrity for the ProductReview table.
How should you complete the relevant Transact-SQL statement? To answer? select the appropriate Transact-SQL segments in the answer area.
Select two alternatives.
A. For the second selection select: ON DELETE CASCADE ON UPDATE NO ACTION
B. For the second selection select: ON DELETE NO ACTION ON UPDATE NO ACTION
C. For the first selection select: WITH CHECK
D. For the second selection select: ON DELETE CASCADE ON UPDATE CASCADE
E. For the first selection select: WITH NOCHECK
F. For the second selection select: ON DELETE NO ACTION ON UPDATE CASCADE
Answer: E,F
Explanation:
Explanation
B: We should use WITH NOCHECK as existing records in the ProductReview table must not be validated with the Product table.
C: Deletes should not be allowed, so we use ON DELETE NO ACTION.
Updates should be allowed, so we use ON DELETE NO CASCADE
NO ACTION: the Database Engine raises an error, and the update action on the row in the parent table is rolled back.
CASCADE: corresponding rows are updated in the referencing table when that row is updated in the parent table.
Note: ON DELETE { NO ACTION | CASCADE | SET NULL | SET DEFAULT }
Specifies what action happens to rows in the table that is altered, if those rows have a referential relationship and the referenced row is deleted from the parent table. The default is NO ACTION.
ON UPDATE { NO ACTION | CASCADE | SET NULL | SET DEFAULT }
Specifies what action happens to rows in the table altered when those rows have a referential relationship and the referenced row is updated in the parent table. The default is NO ACTION.
Note: You must modify the ProductReview Table to meet the following requirements:
1. The table must reference the ProductID column in the Product table
2. Existing records in the ProductReview table must not be validated with the Product table.
3. Deleting records in the Product table must not be allowed if records are referenced by the ProductReview table.
4. Changes to records in the Product table must propagate to the ProductReview table.
References: https://msdn.microsoft.com/en-us/library/ms190273.aspx
https://msdn.microsoft.com/en-us/library/ms188066.aspx

NEW QUESTION: 2
You are developing a SQL Server 2008 Analysis Services (SSAS) solution which includes a time dimension called TestTime which includes a hierarchy called Year-By-Day for Company.com.
You own a measure called Number from a measure group called MeasureTester.
In the previous time period for the current level of the Yer-Bet-Day hierarchy, you should make sure that you develop a calculated member to show the Number measure.
Which is the correct answer?
A. You should utilize ([Measures].[ Number],[ TestTime].[Yer-Bet-Day].NextSibling)
B. You should utilize ([Measures].[ Number],LASTPERIODS( 1,[TestTime].[Yer-Bet-Day].PrevMember))
C. You should utilize ([Measures].[ Number],LASTPERIODS( 0,[TestTime].[Yer-Bet-Day].PrevMember))
D. You should utilize [Measures].[ Number],OPENINGPERIOD [TestTime].[Yer-Bet-Day].FirstSibling.Level))
Answer: B
Explanation:
LastPeriods (MDX)
SQL Server 2008 R2 Other Versions Returns a set of members up to and including a specified
member.
Syntax LastPeriods(Index [ ,Member_Expression ] )
Arguments Index - A valid numeric expression that specifies a number of periods.
Member_Expression - A valid Multidimensional Expressions (MDX) expression that returns a
member.
Remarks
If the specified number of periods is positive, the LastPeriods function returns a set of members
that start with the member that lags Index - 1 from the specified member expression, and ends
with the specified member.
The number of members returned by the function is equal to Index.
If the specified number of periods is negative, the LastPeriods function returns a set of members
that start with the specified member and ends with the member that leads (- Index - 1) from the
specified member. The number of members returned by the function is equal to the absolute value
of Index.
If the specified number of periods is zero, the LastPeriods function returns the empty set. This is
unlike the Lag function, which returns the specified member if 0 is specified.
If a member is not specified, the LastPeriods function uses Time.CurrentMember. If no dimension
is marked as a Time dimension, the function will parse and execute without an error, but will cause
a cell error in the client application.
Examples
The following example returns the default measure value for the second third, and fourth fiscal
quarters of fiscal year 2002.
SELECT LastPeriods(3,[Date].[Fiscal].[Fiscal Quarter].[Q4 FY 2002]) ON 0 FROM [Adventure
Works]
Note
This example can also be written using the : (colon) operator:
[Date].[Fiscal].[Fiscal Quarter].[Q4 FY 2002]: [Date].[Fiscal].[Fiscal Quarter].[Q2 FY 2002]
The following example returns the default measure value for the first fiscal quarter of fiscal year
2002. Although the specified number of periods is three, only one can be returned because there
are no earlier periods in the fiscal year.
SELECT LastPeriods (3,[Date].[Fiscal].[Fiscal Quarter].[Q1 FY 2002] ) ON 0 FROM [Adventure
Works]

NEW QUESTION: 3
What is the name of the internal bridge used by AHV nodes and CVMs?
A. br0
B. vnet 0
C. br1
D. virbr0
Answer: D