Tag Archives: quantum

Math Shaped

To prepare a talk for the upcoming MathFest, to be held in Chicago this year, I was ruminating over articulating a clean-cut yet telling narrative. Since the talk subject is on ways to effectively outreach mathematics to general audience, it should at least somewhat bring up core concepts of mathematics. Somehow allude to the essentiality of its graphical and revelatory power, compared to just an instrument to calculate. Meaning mixing in subtler forms of advanced math, even abstract ones. I am sensitive to oversimplifying anything (my take on popular writing). It’s like providing a forced picture—like peas and potato analogy of quantum and cosmic realms in The Theory of Everything—that is far from an actual picture, and importantly dampened down on beauty, and inspiration. The point of outreach is to convey the subject—its significance and elegance that lay in the eyes of those who swim in it—not recite a lullaby.  And in my experience audience from all backgrounds, even without math ones, show true enthusiasm only when prompted into intricate and advanced forms of mathematics, yearning for the real sense. It’s there where the real message is, of what mathematics actually is about.

In my experience outreaching an advanced scientific field effectively rests on two basic elements. First, tell it the way it is, don’t soften it. That’s the hard part because all those elaborate labyrinthine equations with functionalities, symbols, and notations floating all over them is the very thing that makes some of us flee. And thus the second, present them correlatively as physical entity: Numbers to space, Algebra to geometry, Calculus to continual smooth change, Group and matrices to potentiality of abstract objects, the list is endless, and that physics itself at the core is mathematics. All those preposterous looking equations are actually quite beautiful and insinuating if you understand that those terms are the pieces of the landscape. The tangled appearance of an equation, like Dirac’s, would dwindle away once one sees what a colossal argument the equation is making.

Dirac_eq

Persuasion in an outreach effort usually employs an object central to disseminating pronouncements of the subject. I have been thinking of having an actual physical object, and the top two in the list were tesseract and Calabi-Yau manifold. Tesseract represents four dimensional cube—Mathew McConaughey materializing in tesseract after he plunges into the black hole in the movie Interstellar, making tesseract currently an object of popular demand. Calabi-Yau manifold is a mathematical thing of a projective plane, surmising six dimensions. Both, thus, though may connect to reality in theoretical outlooks, cannot crystallize in our 3-D view. They are abstractions of mathematics, and stand to be significant (very) fully in their own right.

Having a real physical model in the talk, I thought, would be pedagogical, and a neat way to draw in enthusiasm. On simply googling tesseract I bumped into a 3-D printing enterprise shapeways, offering a model of tesseract (a beautiful one). (I didn’t look for Calabi-Yau model. Didn’t think it was possible to have a model of such an intricate complexity.) To my amazement, here they offered a Calabi-Yau 3-D printout as well, in different colors, snapshots, and sizes.

In conveying the actuality of mathematics with its ultra sophisticated developments, Calabi-Yau manifold can be an epitome that embodies conceptions of advanced algebra, cutting-edge geometry, mathematical abstractions, and advancements of modern physics all in one exhibit. And it is aesthetically pleasing as well. I got it from them.

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Here is the snapshot of the 3-D printout (Itself a 3-D snapshot of 6-D object). It was also nice to exchange a few productive words with Rick Russell—at the Shapeways, who generated this 3-D printout with an expert eye for math and its models—on this very enchanting object. Hope the audience will like the object as much as I do.

CY_Rot

The model emerges from the graphic that was originally rendered by A. Hanson, Indiana University, and it has done a phenomenal job in making its appearance from the nooks of abstract algebra articles, to academic and popular literature, to the explanations of modern physics. Somewhat surprised that it hasn’t shown up in the mainstream media, at least not yet.

Be back shortly,

Neeti.

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Magnified Universe: Cosmic Landscape in Quantum Décor

Magnified Universe: Cosmic Landscape in Quantum Décor

The theme accentuated

The underlying gist of the blog Magnified Universe: Cosmic Landscape in Quantum Décor is to envision the truest order of reality, or the uttermost flow of reality to be precise—simply because “flow” allows for continual change. Envisioning of the truest order of reality is the biggest of all questions! It is akin to piecing every single bit there is into a crisp comprehensible picture. That would be an insurmountable task. In a hilarious cartoon by S. Harris—in fact so many of his sketches are truly humorous, very popular among physicists and mathematicians, and often appear in Stephen Hawking’s popular science books—a scientist claims to have arrived at a unified theory simply by putting a box around a set of equations that described reality.

Dovetailing every piece into a whole amounts to subsuming every shred there is. From infinitesimal bits of atomic and subatomic particles, even strings (that string theory claims to be of Planck length, 10-35 meters, in size), to molecular and macromolecular structures to day-to-day objects to planets, and their satellites, to stars to solar systems to galaxies, and their clusters, to the entire of the universe (about the diameter of 93 billion light years), not to mention the parallel universes that we discern to be existing based on quantum mechanical understanding.

Oh yes, the indispensable of consciousness, awareness, and our subliminal paraphernalia as well!

Did I leave out anything? Caution me!

Accounting for all of these is a truly herculean task. We do need to shove all of it in a box, and wrap it up!

Then as I discussed in my last two posts, the perplexities that we pick up as we surf the landscape of scientific endeavors: On the beginning of time; emergence of consciousness; existence of multiverse; accelerating universe; recently, the dark matter; dark energy, and interconnectedly, the understanding of gravitational force; the dwell of antimatter. We have to account for all of this as well, meaning how they play out, or the reasoning behind their play. They are all real facts: They do need to either take role or resolve themselves out.

The unification implies just that: Seeing a harmonious picture in which all elements of reality take role, and discrepancies resolve. But even before we embark on such a journey, we need to imbue ourselves with two paramount characteristics of reality:

1] The universe is unified: Matter exists through fundamental forces such as gravity and electromagnetism.

2] The universe is uniform: Forces through which matter exists are uniform. Matter exists by same rules, anywhere.

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PostIII_Figure

After this assimilation, we can pretty much see that we as a scientist would want to see resolve any fact tossed at us into the above overarching picture of reality. Empirical observations, their disagreements, their quandaries, how we fit and continue, the mental bearings, and at a subtle level even the methodic concepts that we come to rely on, should all swimmingly be the part of the grand scheme.

If we leave scientific facts behind, the picture isn’t just fuzzy and disconcerting, it can be delusional. On the other hand, if we leave out the other elements of reality—the nature of self for instance—the scientific picture, wouldn’t be fully readable, and its perplexities wouldn’t resolve. Plainly because all the elements play in the construction of the full-length picture, again more precisely, flow. To see any kind of picture, scientific or otherwise, all pieces should be accounted for.

And those pieces are:

1] Cosmic observations

2] Quantum observations

3] The nature of self

I will continue with the theme of this blog in the next post, and also bring up the idea behind title itself—Magnified Universe: Cosmic Landscape in Quantum Décor.

Till then feel free to pitch in your views.

See you soon,

Neeti

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