Exact(1)
The following is the equivalent connection between convexity and Theorem B.
Similar(59)
Achieved lateral resistance, lateral stiffness and ductility of the proposed connections was approximately 98%, 80%and80%0% of the equivalent monolithic connection, respectively.
An equivalent connection pattern is presented to facilitate the modeling of switching and routing operations.
If one would now straightforwardly solve the binary linear program for the unit cell, as we did in Section 3.1, then one would encounter the problem of equivalent connections, i.e., connections that are doubled due to the shifting of the unit cell.
However, a conformal structure by itself does not determine a unique symmetric linear connection; it only determines an equivalence class of conformally equivalent connections \(K = [\Gamma]\), namely, connections which preserve the conformal structure \(C\) during parallel transport.
Making use of Weyl (1923a, 124 125) shows that the conformal structure supplemented with the structure of a length connection or gauge field \(A_{j}(x)\) singles out a unique connection from the equivalence class \(K = [\Gamma]\) of conformally equivalent connections.[48] This unique connection, which is called the Weyl connection, is given by which is analogous to (14).
This paper evaluates the hypothesis that welded hollow section connections, which have circular hollow section (CHS) branch (or bracing or web) members welded to a rectangular hollow section (RHS) chord member, may be converted into "equivalent" connections whereby the circular branch member is replaced by a square branch member.
We proceed by comparing the fiber density of every connection with a set of equivalent connections generated in systems where diffusion coherence contrast is removed by randomly reshuffling the orientation distribution functions (ODFs).
The rotation capacity of connections containing radial welds was nearly 30% lower (on average) than equivalent connections without radial welds.
Hence, both loops consisted of five nodes with equivalent connections: PFC-SMA/PMC; SMA/PMC-M1; SMA/PMC-putamen; SMA/PMC-cerebellum; thalamus-SMA/PMC (Fig. 3).
In this way, the equivalent of several connections among genes in the network can be created or destroyed by a single genetic mutation.
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