#differentialEquations
SCUDEM gives undergraduate students a chance to work through an open-ended problem, build a model, collaborate with a team, and explain their results.

Read more: www.comap.org/blog/item/sc...

#SCUDEM #DifferentialEquations #MathModeling #AppliedMathematics
September 22, 2026 at 12:39 PM
George David Birkhoff (March 21, 1884 – November 12, 1944) was an American mathematician. He is considered one of the top American mathematicians of his generation. He made valuable contributions to the theory of #differentialEquations, #dynamicalSystems, the #fourcolorProblem.
September 4, 2026 at 11:16 AM
Have you registered for SCUDEM XI 2026 yet?

Student Challenge Using Differential Equations Modeling (SCUDEM) is a #MathModeling challenge for teams of up to 3 students.

Learn more and register today: scudem.org

#DifferentialEquations #SCUDEM #MathContest
August 31, 2026 at 4:49 PM
SCUDEM gives students at two-year colleges a chance to use what they’re learning in class to tackle an open-ended modeling problem.

See why SCUDEM can be a great fit for a differential equations course: www.comap.org/blog/item/sc...

#SCUDEM #MathModeling #DifferentialEquations #Math
August 21, 2026 at 1:22 PM
Thinking about participating in SCUDEM? Whether you're brand new or returning with a team, this info session will help you get started.

📅 Wednesday, September 16
🕔 5:00 PM ET

🔗 Register here: bit.ly/SCUDEMInfoSession

#MathModeling #DifferentialEquations #AppliedMath
August 6, 2026 at 12:18 PM
Registration for SCUDEM XI 2026 is now open!

📅 Challenge Window: October 16-November 10, 2026

Learn more and register your team today: www.comap.org/blog/item/re...

#DifferentialEquations #MathModeling
July 22, 2026 at 6:39 PM
We're excited to welcome SIMIODE to the COMAP community!

This new chapter ensures the continuation of SIMIODE's modeling-first approach to differential equations.

Learn more: www.comap.org/blog/item/si...

#MathModeling #DifferentialEquations #MathEducation #STEMEducation
June 29, 2026 at 3:48 PM
June 21, 2026 at 3:05 AM
June 11, 2026 at 5:13 PM
Call for Papers | Electronic Research Archive
Special Issue: Boundary value problems for difference, differential, and integral equations and their applications

Info: www.aimspress.com/era/article/...

#BVP #DifferentialEquations #AppliedMathematics #NumericalAnalysis
May 28, 2026 at 2:37 AM
The latest SCUDEM expo features teams presenting their solutions to three differential equation modeling problems.
Click the link below to watch the presentations and explore the different approaches used by participants. #simiode #scudem #differentialequations youtube.com/@simiode?si=...
SIMIODE
We would like to introduce you to an exciting project: SIMIODE - Systemic Initiative for Modeling Investigations and Opportunities with Differential Equations. SIMIODE is about teaching differentia...
youtube.com
March 18, 2026 at 6:58 PM
The #BrainDynamicsToolbox is an open toolbox for simulating #DynamicalSystems in matlab. It was designed for solving problems in #ComputationalNeuroscience but can be applied to any domain that uses nonlinear #DifferentialEquations. The homepage is bdtoolbox.org.
February 28, 2026 at 7:51 AM
Shout out to Professor Lazaros Moysis reviewing Si Li's book on Ordinary Differential Equations!

www.youtube.com/watch?v=9DGT... @ YouTube

#diffeq #differentialequations #ipb #intlpress #ode #bookreview
Ordinary differential equations book #book #ode #mathematics #bookreview #differentialequation
YouTube video by Lazaros Moysis
www.youtube.com
January 27, 2026 at 4:06 PM
Using ± in Julia code? Yes, because real models don’t come with exact parameters.

using DifferentialEquations, MonteCarloMeasurements
k = 1.0 ± 0.1
u0 = 1.0 ± 0
prob = ODEProblem((u,p,t)->-k*u, u0, (0,5))
sol = solve(prob)
mean(sol[end])

#JuliaLang #computing
November 29, 2025 at 7:07 AM
Why the hell do so many of my threads end up with only the second post getting likes, these bots be wildin

(retroactive tags: #math #differentialequations #calculus)
Like something of the form f'(f(x)) + g(f(x)) = g(x)^f(x) - f(x)^g(x) is probably a bitch to solve because of the form (I mean fucking LOOK at it), and many equations in physics are a pain because of the number of variables (although the form is usually also a massive issue). But for f'(x)=g(x)f(x),
November 24, 2025 at 6:36 PM
Recent #OpenAccess article introduces Lorentz Pigment Mixing (LPM) – a method making digital colors blend as naturally as real pigments. #LorenzCurve #DifferentialEquations #RGB

See how #mathematics brings color to life: bit.ly/47fKDfS

#OpenScience #ACRT
October 29, 2025 at 3:05 PM
Applications are open for judges for our annual differential equations modeling challenge.

See qubeshub.org/community/gr... for more information!

#mathchallenge #SIMIODE #differentialequations #mathematics
SCUDEM - SIMIODE Challenge Using Differential Equations Modeling
QUBES Hub - The Power of Biology, Math, and Community
qubeshub.org
August 10, 2025 at 4:16 PM