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On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method. #NumericalAnalysis #DifferentialEquation

diagonalizando's tweet image. On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method.
#NumericalAnalysis #DifferentialEquation
diagonalizando's tweet image. On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method.
#NumericalAnalysis #DifferentialEquation

Did you know that having accurate floating point operations at every step doesn't guarantee your algorithm is stable? #NumericalAnalysis #ScientificComputing #Julialang #SciML


November 3, 1867 — Wilhelm Kutta was born. A key developer of the Runge–Kutta methods, he revolutionized numerical solutions of differential equations—now essential for simulations across science and engineering. 🔢⚙️ #OnThisDay #Math #NumericalAnalysis

MatildaSpicer's tweet image. November 3, 1867 — Wilhelm Kutta was born.
A key developer of the Runge–Kutta methods, he revolutionized numerical solutions of differential equations—now essential for simulations across science and engineering. 🔢⚙️
#OnThisDay #Math #NumericalAnalysis

Check out this Numerical Analysis LaTeX template on CoCalc: root-finding, quadrature, interpolation, convergence; auto figures + biber, pro visuals. Open: cocalc.com/share/public_p… #LaTeX #NumericalAnalysis #CoCalc

cocalc_com's tweet image. Check out this Numerical Analysis LaTeX template on CoCalc: root-finding, quadrature, interpolation, convergence; auto figures + biber, pro visuals. 

Open: 
cocalc.com/share/public_p… 

#LaTeX #NumericalAnalysis #CoCalc

On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem. #NumericalAnalysis

diagonalizando's tweet image. On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem.
#NumericalAnalysis
diagonalizando's tweet image. On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem.
#NumericalAnalysis

New SIAM-style LaTeX template with live Python integration! Compare classical vs accelerated conjugate gradient methods with reproducible results. Perfect for numerical analysis papers. cocalc.com/share/public_p… #SIAM #NumericalAnalysis

cocalc_com's tweet image. New SIAM-style LaTeX template with live Python integration! Compare classical vs accelerated conjugate gradient methods with reproducible results. Perfect for numerical analysis papers. 

cocalc.com/share/public_p… 

#SIAM #NumericalAnalysis

Need more than good-looking plots from your ODE solvers in MATLAB? MathWorks numerical analyst Michael Hosea unpacks how to adjust tolerances for real precision. A must-read for anyone working with differential equations 🧮🔍 spr.ly/6013dMWah #MATLAB #NumericalAnalysis


On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death. #NumericalAnalysis

diagonalizando's tweet image. On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death.
#NumericalAnalysis
diagonalizando's tweet image. On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death.
#NumericalAnalysis

On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method. #NumericalAnalysis

diagonalizando's tweet image. On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method.
#NumericalAnalysis
diagonalizando's tweet image. On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method.
#NumericalAnalysis

#NumericalAnalysis Accelerating convergence with Aitken's Method (Delta squared) and plotting it with @maplesoft

blackcloudsover's tweet image. #NumericalAnalysis 
Accelerating convergence with Aitken's Method (Delta squared) and plotting it with @maplesoft

I built a 3-part series on ODEs, written as a self-learning project with ChatGPT as my learning partner. 1️⃣ Existence and Uniqueness 2️⃣ One-Step (Runge–Kutta) Methods 3️⃣ The Dahlquist Equivalence Theorem #NumericalAnalysis #DifferentialEquations #AIinEducation #LLMs


Glad to have organized a minisymposium with excellent talks on Data driven #numericalanalysis and #machinelearning of #complexsystems at #NUMTA

CSiettos's tweet image. Glad to have  organized a minisymposium with excellent talks on Data driven #numericalanalysis and #machinelearning of #complexsystems  at #NUMTA

Learning about forward and backward propagation, I can't help but be amused that Newton had his own forward and backward interpolation formulas. The guy was really ahead of his time! Dawg Newton was so freaking amazing it's insane 🫡 #MachineLearning #NumericalAnalysis

CyrusN16's tweet image. Learning about forward and backward propagation, I can't help but be amused that Newton had his own forward and backward interpolation formulas. The guy was really ahead of his time! 
Dawg Newton was so freaking amazing it's insane 🫡

#MachineLearning 
#NumericalAnalysis

⚡Our Latest Release ! ⚡ **Order now ** shroffpublishers.com/books/97893680… Fundamentals of Numerical Analysis by Priyadarshi Majumder, Sandip DeyA textbook for students of NEP UG Electronics Major, NEP UG Maths & as well as students of B.Tech. #numericalanalysis

shroffpub's tweet image. ⚡Our Latest Release ! ⚡
**Order now **
shroffpublishers.com/books/97893680…
Fundamentals of Numerical Analysis by Priyadarshi Majumder, Sandip DeyA textbook for students of NEP UG Electronics Major, NEP UG Maths  & as well as students of B.Tech. #numericalanalysis

⚡Releasing Soon ! ⚡ **Pre-order now ** shroffpublishers.com/books/97893680… Fundamentals of Numerical Analysis By Priyadarshi Majumder, Sandip Dey A textbook for students of UG Electronics Major, UG Mathematics Major & as well as students of B.Tech NEP. #numericalanalysis

shroffpub's tweet image. ⚡Releasing Soon ! ⚡
**Pre-order now **
shroffpublishers.com/books/97893680…
Fundamentals of Numerical Analysis By Priyadarshi Majumder, Sandip Dey
A textbook for students of  UG Electronics Major, UG Mathematics Major & as well as students of B.Tech NEP. #numericalanalysis

Kicking off #SIAMCSE25 with the first invited presentation of the week! Sigal Gottlieb (@UMassD) explores strong stability preserving methods for hyperbolic partial differential equations. If you're on site, don’t miss it! #NumericalAnalysis

TheSIAMNews's tweet image. Kicking off #SIAMCSE25 with the first invited presentation of the week! Sigal Gottlieb (@UMassD) explores strong stability preserving methods for hyperbolic partial differential equations. If you're on site, don’t miss it! #NumericalAnalysis
TheSIAMNews's tweet image. Kicking off #SIAMCSE25 with the first invited presentation of the week! Sigal Gottlieb (@UMassD) explores strong stability preserving methods for hyperbolic partial differential equations. If you're on site, don’t miss it! #NumericalAnalysis
TheSIAMNews's tweet image. Kicking off #SIAMCSE25 with the first invited presentation of the week! Sigal Gottlieb (@UMassD) explores strong stability preserving methods for hyperbolic partial differential equations. If you're on site, don’t miss it! #NumericalAnalysis

High-Accuracy Finite Difference Methods by Bengt Fornberg Addresses an important and current topic in scientific computing not found in standard books on the finite difference method. 📚 cup.org/4kApyRf #numericalanalysis

cambridgeasia's tweet image. High-Accuracy Finite Difference Methods by Bengt Fornberg
Addresses an important and current topic in scientific computing not found in standard books on the finite difference method.
📚 cup.org/4kApyRf
#numericalanalysis

(Open Access) Architecture of Advanced Numerical Analysis Systems: freecomputerbooks.com/Architecture-o… Look for "Read and Download Links" section to download. Follow me if you like this post. #NumericalAnalysis #ScientificComputing #NumericalMethods #OCaml #programming

ecomputerbooks's tweet image. (Open Access) Architecture of Advanced Numerical Analysis Systems: freecomputerbooks.com/Architecture-o…

Look for "Read and Download Links" section to download. Follow me if you like this post.
#NumericalAnalysis #ScientificComputing #NumericalMethods #OCaml #programming

On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem. #NumericalAnalysis

diagonalizando's tweet image. On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem.
#NumericalAnalysis
diagonalizando's tweet image. On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem.
#NumericalAnalysis

On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method. #NumericalAnalysis #DifferentialEquation

diagonalizando's tweet image. On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method.
#NumericalAnalysis #DifferentialEquation
diagonalizando's tweet image. On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method.
#NumericalAnalysis #DifferentialEquation

November 3, 1867 — Wilhelm Kutta was born. A key developer of the Runge–Kutta methods, he revolutionized numerical solutions of differential equations—now essential for simulations across science and engineering. 🔢⚙️ #OnThisDay #Math #NumericalAnalysis

MatildaSpicer's tweet image. November 3, 1867 — Wilhelm Kutta was born.
A key developer of the Runge–Kutta methods, he revolutionized numerical solutions of differential equations—now essential for simulations across science and engineering. 🔢⚙️
#OnThisDay #Math #NumericalAnalysis

I built a 3-part series on ODEs, written as a self-learning project with ChatGPT as my learning partner. 1️⃣ Existence and Uniqueness 2️⃣ One-Step (Runge–Kutta) Methods 3️⃣ The Dahlquist Equivalence Theorem #NumericalAnalysis #DifferentialEquations #AIinEducation #LLMs


Did you know that having accurate floating point operations at every step doesn't guarantee your algorithm is stable? #NumericalAnalysis #ScientificComputing #Julialang #SciML


On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method. #NumericalAnalysis

diagonalizando's tweet image. On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method.
#NumericalAnalysis
diagonalizando's tweet image. On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method.
#NumericalAnalysis

Check out this Numerical Analysis LaTeX template on CoCalc: root-finding, quadrature, interpolation, convergence; auto figures + biber, pro visuals. Open: cocalc.com/share/public_p… #LaTeX #NumericalAnalysis #CoCalc

cocalc_com's tweet image. Check out this Numerical Analysis LaTeX template on CoCalc: root-finding, quadrature, interpolation, convergence; auto figures + biber, pro visuals. 

Open: 
cocalc.com/share/public_p… 

#LaTeX #NumericalAnalysis #CoCalc

On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death. #NumericalAnalysis

diagonalizando's tweet image. On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death.
#NumericalAnalysis
diagonalizando's tweet image. On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death.
#NumericalAnalysis

New SIAM-style LaTeX template with live Python integration! Compare classical vs accelerated conjugate gradient methods with reproducible results. Perfect for numerical analysis papers. cocalc.com/share/public_p… #SIAM #NumericalAnalysis

cocalc_com's tweet image. New SIAM-style LaTeX template with live Python integration! Compare classical vs accelerated conjugate gradient methods with reproducible results. Perfect for numerical analysis papers. 

cocalc.com/share/public_p… 

#SIAM #NumericalAnalysis

🆕🎬Orbit equivalence and topological and measurable dynamics Marrakchi, Amine (2025). Strongly ergodic equivalence relations and full factors. CIRM. Audiovisual resource. dx.doi.org/10.24350/CIRM.… library.cirm-math.fr/Record.htm?idl… @_CIRM #math #NumericalAnalysis #DynamicalSystems

Bibli_CIRM's tweet image. 🆕🎬Orbit equivalence and topological and measurable dynamics
Marrakchi, Amine (2025). Strongly ergodic equivalence relations and full factors. CIRM. Audiovisual resource. dx.doi.org/10.24350/CIRM.…
library.cirm-math.fr/Record.htm?idl…
@_CIRM #math #NumericalAnalysis #DynamicalSystems

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Check out this Numerical Analysis LaTeX template on CoCalc: root-finding, quadrature, interpolation, convergence; auto figures + biber, pro visuals. Open: cocalc.com/share/public_p… #LaTeX #NumericalAnalysis #CoCalc

cocalc_com's tweet image. Check out this Numerical Analysis LaTeX template on CoCalc: root-finding, quadrature, interpolation, convergence; auto figures + biber, pro visuals. 

Open: 
cocalc.com/share/public_p… 

#LaTeX #NumericalAnalysis #CoCalc

On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method. #NumericalAnalysis #DifferentialEquation

diagonalizando's tweet image. On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method.
#NumericalAnalysis #DifferentialEquation
diagonalizando's tweet image. On November 3, 1867, Martin Wilhelm Kutta was born. He was a German mathematician and physicist who worked in numerical analysis. He is best remembered for the Runge–Kutta method.
#NumericalAnalysis #DifferentialEquation

On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method. #NumericalAnalysis

diagonalizando's tweet image. On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method.
#NumericalAnalysis
diagonalizando's tweet image. On October 24, 1821, Philipp von Seidel was born. He was a German mathematician and optics researcher who worked in mathematical analysis. He is remembered for being the first to publish the Gauss-Seidel method.
#NumericalAnalysis

On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death. #NumericalAnalysis

diagonalizando's tweet image. On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death.
#NumericalAnalysis
diagonalizando's tweet image. On October 15, 1875, André-Louis Cholesky was born. He was a French mathematician who worked in geodesy and cartography. He developed the Cholesky matrix decomposition and the Cholesky method, which were published posthumously after his death.
#NumericalAnalysis

New SIAM-style LaTeX template with live Python integration! Compare classical vs accelerated conjugate gradient methods with reproducible results. Perfect for numerical analysis papers. cocalc.com/share/public_p… #SIAM #NumericalAnalysis

cocalc_com's tweet image. New SIAM-style LaTeX template with live Python integration! Compare classical vs accelerated conjugate gradient methods with reproducible results. Perfect for numerical analysis papers. 

cocalc.com/share/public_p… 

#SIAM #NumericalAnalysis

#callforpapers #mdpisymmetry A new Special Issue opens for submission! Title: Symmetry/Asymmetry in Numerical Analysis and Scientific Computing Editor: Carlos Couder-Castañeda and José Carlos Ortiz Alemán Details: brnw.ch/21wS9O5 #numericalanalysis #parallelcomputing

Symmetry_MDPI's tweet image. #callforpapers #mdpisymmetry A new Special Issue opens for submission!

Title: Symmetry/Asymmetry in Numerical Analysis and Scientific Computing
Editor: Carlos Couder-Castañeda and José Carlos Ortiz Alemán
Details: brnw.ch/21wS9O5
#numericalanalysis #parallelcomputing

November 3, 1867 — Wilhelm Kutta was born. A key developer of the Runge–Kutta methods, he revolutionized numerical solutions of differential equations—now essential for simulations across science and engineering. 🔢⚙️ #OnThisDay #Math #NumericalAnalysis

MatildaSpicer's tweet image. November 3, 1867 — Wilhelm Kutta was born.
A key developer of the Runge–Kutta methods, he revolutionized numerical solutions of differential equations—now essential for simulations across science and engineering. 🔢⚙️
#OnThisDay #Math #NumericalAnalysis

On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem. #NumericalAnalysis

diagonalizando's tweet image. On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem.
#NumericalAnalysis
diagonalizando's tweet image. On November 3, 1967, Alexander Aitken passed away. He was a New Zealand mathematician with an extraordinary memory. He worked in statistics and numerical analysis. He is remembered for Aitken’s Δ^2 process and Aitken’s acceleration theorem.
#NumericalAnalysis

#Highlyviewedpaper 📚 #NumericalAnalysis of #Newtonian Heating #ConvectiveFlow by Way of Two Different Surfaces 🔗 mdpi.com/2076-3417/12/5… 👨‍🔬 By Dr. Khalil Ur Rehman et al.

Applsci's tweet image. #Highlyviewedpaper

📚 #NumericalAnalysis of #Newtonian Heating #ConvectiveFlow by Way of Two Different Surfaces
🔗 mdpi.com/2076-3417/12/5…
👨‍🔬 By Dr. Khalil Ur Rehman et al.

#NumericalAnalysis Accelerating convergence with Aitken's Method (Delta squared) and plotting it with @maplesoft

blackcloudsover's tweet image. #NumericalAnalysis 
Accelerating convergence with Aitken's Method (Delta squared) and plotting it with @maplesoft

(Open Access) Architecture of Advanced Numerical Analysis Systems - freecomputerbooks.com/Architecture-o… Look for "Read and Download Links" section to download. Follow/Connect me if you like this post. #NumericalAnalysis #ScientificComputing #NumericalMethods #NumericalComputation

ecomputerbooks's tweet image. (Open Access) Architecture of Advanced Numerical Analysis Systems - freecomputerbooks.com/Architecture-o…

Look for "Read and Download Links" section to download. Follow/Connect me if you like this post.

#NumericalAnalysis #ScientificComputing #NumericalMethods #NumericalComputation

Numerical Computing with MATLAB - freecomputerbooks.com/Numerical-Comp… Look for "Read and Download Links" section to download. #MATLAB #NumericalComputing #NumericalAnalysis #ScientificComputing

ecomputerbooks's tweet image. Numerical Computing with MATLAB - freecomputerbooks.com/Numerical-Comp…

Look for "Read and Download Links" section to download.

#MATLAB #NumericalComputing #NumericalAnalysis #ScientificComputing

Tea Time Numerical Analysis: Experiences in Mathematics - freecomputerbooks.com/Tea-Time-Numer… Look for "Read and Download Links" section to download. #NumericalAnalysis #NumericalComputation #ScientificComputing #math #mathematics

ecomputerbooks's tweet image. Tea Time Numerical Analysis: Experiences in Mathematics - freecomputerbooks.com/Tea-Time-Numer…

Look for "Read and Download Links" section to download.

#NumericalAnalysis #NumericalComputation #ScientificComputing #math #mathematics

Accurate Nonstandard Path Integral Models for Arbitrary Dielectric Boundaries in 2-D NS-FDTD Domains mdpi.com/1424-8220/24/7… #electromagnetic #numericalanalysis #radar

Sensors_MDPI's tweet image. Accurate Nonstandard Path Integral Models for Arbitrary Dielectric Boundaries in 2-D NS-FDTD Domains
mdpi.com/1424-8220/24/7…
#electromagnetic #numericalanalysis #radar

⚡Our Latest Release ! ⚡ **Order now ** shroffpublishers.com/books/97893680… Fundamentals of Numerical Analysis by Priyadarshi Majumder, Sandip DeyA textbook for students of NEP UG Electronics Major, NEP UG Maths & as well as students of B.Tech. #numericalanalysis

shroffpub's tweet image. ⚡Our Latest Release ! ⚡
**Order now **
shroffpublishers.com/books/97893680…
Fundamentals of Numerical Analysis by Priyadarshi Majumder, Sandip DeyA textbook for students of NEP UG Electronics Major, NEP UG Maths  & as well as students of B.Tech. #numericalanalysis

⚡Releasing Soon ! ⚡ **Pre-order now ** shroffpublishers.com/books/97893680… Fundamentals of Numerical Analysis By Priyadarshi Majumder, Sandip Dey A textbook for students of UG Electronics Major, UG Mathematics Major & as well as students of B.Tech NEP. #numericalanalysis

shroffpub's tweet image. ⚡Releasing Soon ! ⚡
**Pre-order now **
shroffpublishers.com/books/97893680…
Fundamentals of Numerical Analysis By Priyadarshi Majumder, Sandip Dey
A textbook for students of  UG Electronics Major, UG Mathematics Major & as well as students of B.Tech NEP. #numericalanalysis

✍ New article is online! Aeroelastic Response in an Oscillating Transonic Compressor Cascade—An Experimental and Numerical Approach 📜 mdpi.com/2504-186X/10/2… @KTHuniversity @GKNAero #compressor #modeshape #numericalanalysis #experiment

ijtpp's tweet image. ✍ New article is online!

Aeroelastic Response in an Oscillating Transonic Compressor Cascade—An Experimental and Numerical Approach
📜 mdpi.com/2504-186X/10/2…

@KTHuniversity 
@GKNAero

#compressor #modeshape #numericalanalysis #experiment

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