FESK.COMYour global study desk
Email us
Home › Scholar › Nguyen Dinh Man
COMPILEDopen profilenot managed by this scholar
N

Nguyen Dinh Man

Researcher Profile 5/10
This is my profile

Information

Featured publications

Research on Optimization of Plunge Centerless Grinding Process using Genetic Algorithm and Response Surface Method9 citations
International Journal of Scientific Engineering and Technology · 2015 · DOI
Determining Cutting Force After Surface Roughness Measurement in Grinding1 citations
Lecture notes in networks and systems · 2018 · DOI
Surveying The Effect of Cutting Parameters on Cutting Force and Surface Roughness When Milling 42Mo Steel with Tin Coating Insert
International Journal of Scientific Research in Science and Technology · 2023 · DOI
The Surface Roughness Model When Turning of 1066 Steel by TiC Insert
International Journal of Scientific Research in Science Engineering and Technology · 2023 · DOI
Investigate the Effect of Cutting Parameters on Surface Roughness When Milling X12m Steel
International Journal of Scientific Research in Science and Technology · 2021 · DOI

About the field of Mathematics

Common research topics in this field:

Composite Structure Analysis and OptimizationAdvanced machining processes and optimizationAdvanced Mathematical Modeling in EngineeringOptimization and Variational AnalysisNonlinear Differential Equations AnalysisStability and Controllability of Differential Equations

Institutions with the most researchers in this field:

These figures count profiles currently in this directory, not nationwide statistics.

The publication list above is compiled from the open academic database OpenAlex (CC0 licence). Compare with the source record on OpenAlex ↗

Suggest / Claim this profile

  
Profile aggregated from public sources. We respect scholars' rights to edit and remove information — all requests are processed promptly.
Nguyen Dinh ManThai Nguyen University
Claim
Original profile stored athocthuat.vn— two pages display the same database, verification syncs everywhere.