• In Listing 9, t1 heading: count.

    在清单9中,t1heading:count。

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  • Consider three tables, T1, T2 and T3.

    考虑3个表:t1、T2和T3。

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  • I've got reactants and calorimeter at T1.

    我有T1下的反应物和量热计。

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  • So delta u B is Cv times T2 minus T1, right.

    是Cv乘以,对吧?

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  • For example, schema_map ((s1, t1), (s2, t2)).

    例如,schema_map ((s 1,t1),(s 2,t2))。

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  • That stands for average between time t1 and time t2.

    来表示t1和t2间的,均值。

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  • For example: 50 absolute users starting to run at time T1.

    例如:50位用户在T1时间点开始运行。

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  • Limited micro-partitioning - Four partitions on T1, 8 on t2.

    有限的微分区——t1上4个,t2上8个。

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  • T1 I will have a timing t1 and I will have a timing t prime.

    我计时,也会为t计时。

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  • Assume there is an index T1X on (c2, c1) columns of a table T1.

    假设在表t 1的(c 2,c1)列上有一个索引t1x。

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  • At time t1, the client request R1 for a resource reaches the server.

    在t1时刻,客户端的资源请求R1到达服务器。

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  • t2 In our case, t1 to t2 here 0 notice the velocity is zero as a start.

    请看我们的例子里的t1和,请注意初始速度为。

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  • For example, assume you have a table named T1 with the following contents.

    假设有一个名为t1的表,其中有以下内容。

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  • So if you rearrange your equations so p1, T1 are now some reference point.

    如果你重写这个方程,让p1和T1变成参考点。

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  • t1 Yeah, and so, when I plug in t1, I get the point where I am at time t1.

    当然,当我代入,可以得到t1时刻的点。

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  • Issue the following SQL statement to see the ID and XML data in the T1 table.

    发出以下sql语句查看t1表中的ID和XML数据。

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  • The statement above at label A shows table t1 with two columns: col1 and col2.

    以上标签A 的语句表示包含col1和col2两个列的表t1。

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  • T1 So you will find here the tension-- call it T1-- which is about 20 newtons.

    这里张力记为-,20N左右。

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  • From the access plan, IXSCAN (3) shows one row is expected to be returned from T1.

    在上面的存取计划中,IXSCAN(3)显示T1预期会返回一行记录。

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  • This causes t1 to request a lock on MCL2 and wait until that lock can be obtained.

    这造成t1请求mcl2上的锁,并一直等候到可以得到锁为止。

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  • In the above, T1 is the fact table with FK-PK relationship with dimension tables T2 and T3.

    其中,T1是与维表t2和t3有fk - PK关系的事实表。

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  • The current scenario would result in T1, T2 and T3 having 1000, 100 and 10 rows respectively.

    现在,T1、T2和T3 将分别有 1000、100 和10 个行。

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  • Consider the simple example of two statements targeted for table T1 - CREATE table T1 (C1 INT).

    考虑一个简单的例子,例子中有两个以表t 1为目标的语句——CREATETABLET1 (C1INT)。

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  • As you can see, t2 has reached the point where it has loaded class c, and t1 has loaded class a.

    可以看出,t2到达的点已经装入了类c,而t1已经装入了类a。

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  • The following commands create the T1 table and import the XML data in Listing 2 into the T1 table.

    以下命令创建表t 1并将清单2中的XML数据导入表t1。

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  • So, another way that you'll also find this written is very often p1 and T1 will be some reference.

    你可以看到另外一种形势,在这种形式中p1和T1被选为参考点。

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  • This will be the time t2 prime, and this is the one when the object bounces back, so this is t1 prime.

    这里将显示t2,这个计时器,当物体反弹回来时,它显示的是t1。

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  • The statement at D results in an error because the CREATE TABLE statement for the t1 table has been rolled back.

    标签D的语句导致一个错误,因为t1表的CREATETABLE 语句被执行了回滚。

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  • Note: in this case tables T1 and T2 are joined without any condition, so every row in T1 matches every row in T2.

    注意:本例中,表t1和T2的连接是不含任何条件的,因此,T 1中的每一行会匹配t 2中的每一行。

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  • To make this listing easier to read, the output from t2 is shown in bold text, and the output from t1 is normal text.

    为了让这个清单更容易阅读,t2的输出用粗体文本表示,t1 的输出用正常文本。

    youdao

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