Binru Yang is a passionate enthusiast of 3D architecture and patterns. Her journey began with engineering homogeneous and heterogeneous industry materials, where she optimized sustainable lightweight structures and honed her skills in FEM, 3D modeling, and performance analysis for automotive and aerospace applications. Her curiosity led her to explore complex biological patterns at nano and microscales, utilizing data science, mathematical, and statistical modeling tools to uncover the biophysical rules of nature. Recently, she embraced machine learning to tackle the intangible realm of real-world human-film interaction data at MYmovies, discovering meaningful segmentations and creating business models that enhance user interaction. She is committed to solving complex puzzles and pursuing continuous growth through innovation.
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Software Application EngineerKey WardBerlin, De -
Postdoctoral ResearcherMax Planck Institute Of Colloids And Interfaces Jan 2024 - PresentPhysical Model Investigation: Investigated physical models of random point cloud distributions using Monte Carlo Simulations.Randomness Control: Controlled degrees of randomness according to hard-disk fluid theory and deviations from standard lattice statistical models.Sensitivity Analysis: Analyzed the sensitivity of both non-linear and linear probability-related parameters.Complexity Exploration: Explored the complexity of morphogenetic behaviors through detailed statistical analysis.Structural Acoustic: Wave propagation properties (utilizing dispersion curves) examine tiling system parameters sensitivity. -
Ph.D. CandidateMax Planck Institute Of Colloids And Interfaces Jan 2020 - May 2024Berlin, PotsdamData Extraction: Extracted continuous, unstructured greyscale data from biological experiments.Data Transformation: Transformed raw data into structured, quantifiable 9 geometric variables representing discrete elements (totaling 45,448 elements).Pattern Recognition: Normalized and analyzed the randomness and distribution shapes of specific continuous variables; recognized and interpreted geometric patterns.Hypothesis Formulation: Hypothesized behaviors and constraints at the cellular biological level based on identified patterns.Mathematical Modeling: Proposed growth mechanisms and mathematical laws governing the formation of geometric shapes.Prediction: Developed models to predict the evolution of patterns and shapes in future iterations. -
Researcher Phd CandidateMatters Of Activity. Image Space Material Jan 2020 - Dec 2022Berlin, GermanyInterdiscilinary study among biology, design, architecture, anthropology -
Diploma ThesisGerman Aerospace Center (Dlr) Mar 2019 - Aug 2019Stuttgart, Baden-Württemberg, GermanyDesigning a vehicle roof-core layer for a dripping ceiling using carbon-fiber reinforced polymers and lattice elements. This involved optimizing its performance across multiple functions, including roof-crash resistance, bending- and torsion-stiffness, thermal comfort, and noise-vibration-harshness. The design approach involved a comprehensive process, including model preparation, equivalent load case preparation, parameter design, and sensitivity tests. By leveraging tools like the FEM, analytical model calculations, and 3D printers, I developed an optimization pipeline to achieve multifunctional objectives.
Binru Y. Education Details
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Doctor Of Science -
Leichtbau, Maschinenbau -
Mechanical Engineering/Mechanical Technology/Technician
Frequently Asked Questions about Binru Y.
What company does Binru Y. work for?
Binru Y. works for Key Ward
What is Binru Y.'s role at the current company?
Binru Y.'s current role is Software Application Engineer.
What schools did Binru Y. attend?
Binru Y. attended Technische Universität Berlin, Technische Universität Dresden, University Of Shanghai For Science And Technology.
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