All of these are transparent to you, as you still end up with a node that has the name you want.
所有这些对于您来说都是透明的,最终得到的是一个具有您所希望的名称的节点。
One of its purposes is to register for all notifications which occur on that cell, node, or server.
其目的之一就是注册该单元、节点或服务器上发生的所有通知。
Because node structures go in only one direction, they know nothing about the sequence of nodes that precede them.
由于节点结构只指向一个方向,所以它们完全不了解它们之前的节点的顺序。
This method tells you all information you need to know: whether one node is descendant of an ancestor of the other, whether it is before or after, and so on.
这个方法告诉您所有想知道的信息:一个节点是否是另一个节点的祖先的后代,它是在前面还是后面呢,等等。
We know that the zero does not count as a node, if per se I actually had managed to hit zero in drawing that, the correct answer would be the bottom one there.
我们知道0不能算作一个节点,如果我确实把零点画成了0,那正确的答案应该是下面的那个。
选择您的结点和服务器。
将显示一个节点。
The node appears in the node list.
该节点将出现在节点列表中。
每个节点都需要这样做。
Pick a node to be the SNMP management node.
选择一个节点作为SNMP管理节点。
启动节点。
Each such node can reference a content node.
每个这样的节点都可以引用一个内容节点。
Every node has one and only one primary node type.
每个节点都有且只有一个主节点类型。
Pick a GPFS cluster node to be the collector node.
选择一个GPFS集群节点作为收集器。
Copy directories and files from main node to the clone node.
将目录与文件从主节点复制到克隆节点。
Upon failure of the primary node the redundant node takes over.
在主节点发生故障时,冗余节点可以接管。
Each node can transfer data sets simultaneously to every other node.
每个节点可以同步地将数据集传输到其他节点。
Normally, each node has a host name that is identical to the node name.
在一般情况下,每个节点有一个与节点名相同的主机名。
RSH allows a user from one node to run commands on another remote node.
RSH允许用户从一个节点上发出在另一个远程节点上执行的命令。
You should see every root node in the menu with every option under that node.
你应该看到菜单中的所有根节点以及它下属的所有选项。
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