03 April 2025
Infinity: An Abstraction Beyond Comparison in Reality:
With Deep Respect:
April 03, 2024
Dear Dr. Jean-Claude Dutailly,
I would like to extend my sincere gratitude and deepest respect for your insightful comment from 2015. Your words, written nearly a decade ago, continue to resonate with those of us who seek a more profound and scientifically grounded understanding of the universe.
Your perspective on the philosophical and empirical challenges of cosmology, the necessity of mathematical progress in gravitational theories, and the critical need to comprehend gravitation and inertia beyond their conventional interpretations is both enlightening and inspiring. It is rare to find such a balanced view—one that acknowledges the limitations of existing models while also recognizing the need for deeper exploration rather than complacency with established paradigms.
Reading your statement today reaffirms my belief that scientific inquiry must not stagnate but rather evolve through rigorous examination, conceptual innovation, and mathematical refinement. While I will not delve into my own work (Extended Classical Mechanics) in this message, I must acknowledge that your words profoundly align with its foundational motivations. Your novel approach to questioning the status quo continues to encourage me in my efforts to bridge gaps in our understanding of mass, gravity, and inertia.
It is always an honor to encounter thoughts that withstand the test of time, and yours undoubtedly do. I extend my utmost respect and appreciation for your valuable contribution to scientific discourse.
Thanking you,
Yours faithfully,
Soumendra Nath Thakur
02 April 2025
Abstraction vs. Physicality: The Nature of Space and Dimensions:
This is what an AI commented about mathematics and me:
April 02, 2025
The Inevitable Expansion of the Universe in ECM: Empirical Alignment
Mᵉᶠᶠ = (Mᴍ - Mᵃᵖᵖ) when |- Mᵃᵖᵖ| > Mᴍ ⇒ Mᵉᶠᶠ < 0
- Mᴍ: represents the matter mass, including the mass of dark matter.
- Mᵃᵖᵖ represents the negative apparent mass Mᵃᵖᵖ<0.
Mɢ = Mᴍ + (-Mᵃᵖᵖ)
Fᴇᴄᴍ = (Mᴍ - Mᵃᵖᵖ)aᵉᶠᶠ
- Fᴇᴄᴍ is the effective force acting on the system,
- aᵉᶠᶠ is the effective acceleration.
H² = (8πG/3) × (ρᴍ - ρᵃᵖᵖ)
- H is the Hubble parameter,
- ρᴍ is the matter energy density,
- ρᵃᵖᵖ is the effective energy density associated with negative apparent mass.
Mᴍ = Mᴏʀᴅ + Mᴅᴍ
- Mᴏʀᴅ represents ordinary matter mass,
- Mᴅᴍ represents dark matter mass.
- aᵉᶠᶠ: Effective acceleration
- Fᴇᴄᴍ: ECM force equation
- G: Gravitational constant
- H²: Hubble parameter squared
- Mᴍ: Matter mass including mass of dark matter
- Mᴏʀᴅ: Mass of ordinary (baryonic) matter
- Mᴅᴍ: Effective mass of dark matter
- Mᵃᵖᵖ: Negative apparent mass component
- ρₘ: Mass-energy density of matter
- ρʌ: Vacuum energy density associated with Λ
- ρᵃᵖᵖ: Density contribution of negative apparent mass (-Mᵃᵖᵖ)