Quite right. For I do not consider the manifold as a physical reality. Only the all important object (circle). For example, we live in a locally non-euclidean space (near a star or a planet) hence gravity. So by the bending of space-time light does not travel in euclidean lines, but follows geodesics. The ‘reality’ is the 3+1 dimensional space we live in, not the higher dimensional manifold in which it is embedded.
The 3+1 dimensional space we live in
is the 4D manifold. There is no higher dimension that we live in (unless you buy into string theory that posits 7, 11, or 23 dimensions, most of which are dimensions of energy and not space or time).
So flatlanders (If you are familiar with the story) would live in flatland even if flatland were a sphere and not a ball (ie 2d as opposed to a 2d surface of a 3d object)
They could determine that their 2d space was embedded in a 3d space by carefully measuring triangle lengths and angles. But their reality, is flatland
I have never read the short story, but I am aware of it.
The difference in radius can be discovered by measuring the arc length. But, as I am looking at such an object, I can never distinguish a circle from a box from an ellipse. For, by itself, topologically, there is no difference. The objects are homeomorphically identical. (forgive the jargon)
While they may be homeomorphically identical, they are definitely different objects! And, though I understand the technical jargon, it sounds like crazy talk to say that there is no difference between the three shapes. This why I argue that the manifold is more important than the surface of the manifold.
I would either include time as part of the space we live in or just consider spacial dimension. That’s why I warped us into the 5th dimension. (Age of aquarius and all that)
And I don’t think we want to go the wormhole route. So what you say here, agreed.
And here is why you are wrong: I can move around to different spatial coordinates all I want and I can always return to the original starting spatial coordinates. However, I can never return to the time I once was. This is why I keep saying that time is the surface of the 4D manifold so that we live on a 3-sphere.
Wormholes are not much more than science fiction. Sure it exists as an asymptotic solution to the Schwartzschild metric, but it requires negative energy which is a physical impossibility–and not negative in the sense that the potential difference between two reference points can be negative, truly negative in the sense that E=mc^2 is negative. Scalar values cannot be negative in reality, only as an idea on a piece of paper or in someone’s brain.
Cool. So the Cosmological Constant may be zero! Of course, locally (especially near black holes) it’s far far far from Euclidean.
Well, not exactly. “The” cosmological constant, Lambda, that most people talk about is the one due to energy and is usually described by the parameter Omega[sub]Lambda[/sub] = Lambda / rho[sub]crit[/sub] (the ratio of the energy density due to Lambda and the critical energy density of the universe) where rho[sub]crit[/sub]=3H[sup]2[/sup]/(8
piG) with H the Hubble constant and G the gravitational constant; this value of Omega[sub]Lambda[/sub] is 0.73.
If the curvature is zero, then the cosmological constant due to curvature, designated by Omega[sub]k[/sub], is actually 1.
By the way, math does not usually describe physical objects, it only aproximates them. So you may sometimes be conflating math and physics.
Physics describes reality and utilizes mathematics to relate quantities. Mathematics just finds new ways to describe numbers. If mathematicians had any notion of physical reality, they would be physicists

Congratulations. Must love math AND science. I just went with math, didn’t want to take a biology class (required for physics majors). PhD… Applied Math…
My undergrad university required physics majors to take “another lab science,” which was either biology or chemistry. I opted for chemistry because I did not like biology when I had it in HS. I did get a Math minor, though I sometimes wish I had gone for a Comp Sci minor instead as most of what I do as a physicist is programming; my number theory & topology courses have proven to be of no use to me now. Even my Advanced Diff Eq course was a joke, though I was expecting to really need that one; I learned only one thing in the 16 week course: if I have a point inside a circle, I can draw another circle that encloses the point and does not overlap with the first circle.