Particle physics

CERN’s 2025 Experiments: Hunting for Physics Beyond the Standard Model

CERN’s 2025 Experiments: Hunting for Physics Beyond the Standard Model

Explore CERN's 2025 experiments at the LHC, hunting for physics beyond the Standard Model, from Higgs studies to dark matter searches.

AI-Powered Physics Simulations: How Computational Models Are Accelerating Discovery

AI-Powered Physics Simulations: How Computational Models Are Accelerating Discovery

Explore how AI-powered physics simulations accelerate discovery in materials, climate, and particle physics with cutting-edge computational models.

CERN’s Latest Discovery: What the New Particle Findings Mean for the Standard Model

CERN’s Latest Discovery: What the New Particle Findings Mean for the Standard Model

Explore CERN's 2025 particle discoveries, including toponium, and their impact on the Standard Model. Uncover new physics insights.

String Theory’s Renaissance: Why M-Theory Is Making Waves in 2025

String Theory’s Renaissance: Why M-Theory Is Making Waves in 2025

Explore M-theory's 2025 revival with breakthroughs in dark energy, AI, and physics. Is this the key to a unified theory?

CERN’s Latest LHC Run: Hunting for Dark Matter Particles in 2025

CERN’s Latest LHC Run: Hunting for Dark Matter Particles in 2025

Explore CERN's 2025 LHC Run 3, hunting dark matter with record 13.6 TeV collisions and AI-driven analysis.

CERN’s Latest: AI-Driven Particle Detection Pushes Standard Model Boundaries

CERN’s Latest: AI-Driven Particle Detection Pushes Standard Model Boundaries

Explore CERN's AI-driven particle detection revolutionizing physics, pushing Standard Model limits with LHC data and future FCC plans.

CERN’s Latest: New Insights into the Standard Model from Recent Collider Data

CERN’s Latest: New Insights into the Standard Model from Recent Collider Data

Explore CERN's 2025 LHC data revealing insights into the Standard Model, toponium, W boson, and quark-gluon plasma, hinting at new physics.