Exact(55)
Fiber parameters such as length, orientation and curvature may vary according to a probability distribution.
By studying the size of the glowing target, the choice of optical fiber parameters is determined.
Here a simple technique is proposed to eliminate the problem without affecting fiber parameters.
The effects of fiber parameters such as index difference and core size are also studied.
Modeling yarn properties from fiber parameters has been a theme of research for many years.
The influence of fiber parameters on the plastic flow direction is also addressed.
Similar(5)
Parameters other than size could account for the differences between samples and make it difficult to claim that the adverse effects are only related to one fiber parameter.
Both parameters are identifiable, even though sufficient deformation is required to allow identifiability of the fiber parameter due to the structure of the constitutive law.
Based on Theorem 2, the Neo-fiber law is structurally identifiable due to its linear parameter dependence, suggesting that the deterioration of the identifiability of the fiber parameter is due to insufficient deformation in the data.
Despite there being several large-scale nerve conduction studies on large myelinated nerve parameters (15), the effects of glycemic control on small-fiber parameters, including skin innervation and neuropathic pain, remain elusive.
To prove the bioactivity of the fibers, parameters like cell viability, morphology (a measure of adhesion), and even stem cell differentiation could be studied.
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