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To create a configuration for the graph represented in Figure 3, a node (a single type of vertex) must be defined.
This graph, represented in a two-dimensional projection, used labeled spheres to represent actors (individuals, their characteristics and frailty levels) and line segments between pairs of actors to represent the observation that a tie exists between the two.
We assumed that the probability functions of all these variables have a Gaussian distribution (initially, after some iteration we can reconsider this distribution) and these functions have the graph represented in Fig. 5 and the graph is directly influenced by σ (if sigma is near zero the probability of that event is near 1) and the probability associated with the variable in discussion.
The undirected unsigned graph represented in two and three dimensions are shown in Figures 10 (A) and 10 (B), respectively.
The stacked bars in the original graph represented in white the morula/blastocyst embryos, and in black the underdeveloped embryos.
We sorted the probe sets by their Euclidean distance from the origin in the logs ratio graph represented in Figure 3, (0,0), which corresponds to probe sets with invariant gene expression at 0 h, 6 h, and 12 h.
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Open bars in the graph represent time in LL, and closed bar represents time in DD.
The routing delay graph is represented in Figure 12 at different geocast region dimensions.
The packet delivery ratio graph is represented in Figure 7 at different terrain dimensions.
The average end to end delay graph is represented in Figure 8 at different terrain dimensions.
The routing delay graph is represented in Figure 9 at different terrain dimensions.
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