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Both previous articles assume that the destination node is not directly reachable from the source.
These entries list all the directly reachable nodes and thus allow communication between them to occur without the hopping overhead.
In this approach, the concept of IPv6 link is extended to a set of nodes which might not be directly reachable within one physical hop.
Consequently, the link seen by the IPv6 layer includes nodes that are not directly reachable but are portrayed as such by the sub-IP layer (see Figure 3).
Although Node 2 is directly reachable at t=5, there exists a shorter path where packets destined to Node 2 can be delivered at t=3 over Node 1.
In software ecosystems, our approach provides a new channel for eliciting ideas and needs as well as receiving feedback from stakeholders who are not directly reachable by product owners or development teams.
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Two points P i,P j are said to be density-reachable from each other, if there is a chain of directly-density-reachable points between them, i.e., ∀P r,P r+1∈{P i,P 1,…,P m,P j }, P r+1 is directly density reachable from P r.
(Directly density-reachable) A point p is directly density-reachable from a point q w.r.t.
Eps and MinPts if there is a chain of points p 1,…, p n (where p 1 = q, and p n = p) such that p i+1 is directly density-reachable from p i. (Density-connected) A point p is density-connected to a point q w.r.t.
Given a set of objects, p is said to be directly density-reachable from a core object q, if p is within the ε-neighbor of q.
If the object is indeed a core object, then all the neighboring objects within the radius ε are inserted into a queue (as they are directly density-reachable).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com