Examples of using Node can in English and their translations into Spanish
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Colloquial
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Official
Each node can be maintained independently.
In binary trees,a special case of plane trees, each node can have either two or no children.
From one node can grow up to 4-5 ripe vegetables.
Each partition may be spread over multiple nodes, and users at the node can perform local transactions on the partition.
Also, here, a node can choose who to trust on the network.
Node can be set to alert users when it starts or stops moving.
In Plane trees each node can have an arbitrary number of children.
The NODE can compute information from four sensors.
Since all these parameters are publicly available, each node can predict, with reasonable accuracy which account will forge the next block.
Each node can be weighted to maximize/minimize its importance.
Additionally, as telegrams pass each node twice in a cycle(for both topology types), a node can even have the opportunity to access data supplied by a subsequent node. .
Each node can be the top of a tree of nodes. .
Each element and node can belong to any independent area and zone.
A node can run largely unattended for a long period of time.
The term node can have several meanings depending on the context.
A node can contain other elements, such as components or artifacts.
In JMP Pro, each node can have one of three different activation functions.
The NODE can do this for two bicycles, bike1 and bike2.
To verify that each node can detect each storage LUN or logical disk, perform the following steps.
The node can be easily plugged in and replaced without any tools.
Each node can be maintained independently.
A node can be a virtual or physical machine, depending on the cluster.
Any node can choose to carry a subset of the full global ledger with him/her.
The NODE can display Current(CUR), Average(AVG), and Maximum(MAX) cadence.
Every node can update the ledger, and other nodes will verify its existence.
Any node can carry out any of these three functions, depending on network layout and configuration.
Although any node can be an output, explicit output nodes are often used to provide clarity.
Since a node can belong to several different k{\displaystyle k}-clique percolation clusters at the same time, the communities can overlap with each other.
In a general tangle the node can decide how much work to do for a transaction, but in IOTA all transactions require the same PoW and thus have the same own weight.
Note that as a node can be a member of more than one clique, a node can be a member of more than one community in these methods giving an overlapping community structure.