Asperger’s Syndrome and “Emotional Vision”

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The source of the term “emotional vision” is the same as the source of the image above: this New York Times article. This blog-post is my response, so I recommend reading the NYT article before you continue.

The story was written by, and about, a man on the autistic spectrum, and, if you’re on the autistic spectrum and get published in that newspaper, you’re high-functioning. High-fuctioning autism (HFA) and Asperger’s syndrome were “merged” in the United States in 2013, shortly before I started figuring out that I am, myself, an Aspie. By the time I discussed the idea with my doctor, it was too late to get an “official” diagnosis. (Yes, that does mean no diagnosis for me, but that’s simply the way things happened, and I’m fine with that.)

Many in the Asperger’s community have a form of emotional blindness — an inability to “read” the emotions of others — and that described me accurately until, well, this week, when I awakened my own emotions, and also gained the ability to understand emotions of some other people. Which people? Only the ones I know well, generally by having contact with them for at least a year. Shortening this time is high on my mental “to-do” list.

In the article linked above, the author voluntarily had his emotional light-switch “turned on” in an experimental treatment designed by other people. That, I believe, is the key difference between his case and mine, for I made the decision to turn mine on myself, wrote the “mental software” behind it myself, and am testing it at every opportunity, in accordance with the way I think. This ability to reprogram my own brain’s software isn’t magic, nor a super-human ability power, but simply a project I have been working on, for, well, over thirty years.

The author of the article above has many regrets about accepting the experimental medical treatment he had to turn his emotions “on.” This treatment involved letting doctors mess around with his brain. My own doctor knows me well, and therefore does not try to force any sort of treatment on me, for he knows that my biggest compulsion involves an intense need to be free from control by other people. Not all Aspies have compulsions, but some of us do, and I am one of them.

Something most Aspies do have are “special interests,” as they are called, but they vary widely. My special interest is mathematics. I learned to speak, read, and write so that I could express my own mathematical ideas. My parents provided me with books about mathematics, one they realized the intensity of my need, driven by curiosity, to absorb mathematical ideas which were new, at the time, to me. I have never stopped wanting more.

My interest in science came later, but not much later, due to that same curiosity. Once I learned how linked the physical sciences and mathematics are, this was inevitable. The more mathematical a given subject was, the faster I could learn it. Without mathematics involved, however, learning was a chore, and deciphering the mysteries of human behavior has been, for this reason, very difficult. Why did people do such bizarre and confusing things? For a long time, I had no idea, and wasn’t willing to do the hard work of figuring it out, either. I puzzled other people, and they puzzled me right back. I made little progress, on this front, for many years.

Why did understanding anything about emotions come so much later in life, for me? That’s an easy question to answer: emotions are more complicated than anything else I have learned, in the sense that emotions are extremely difficult to understand, or express, mathematically. To do this in a way that would work well, I had to rewrite my “software” myself, and that took a lot of hard work, time, and thought. This is entirely unlike the case of the man who told his story in the New York Times, who was thrown into an emotional nightmare by an experimental treatment he willingly received, but did not design. He has my sympathy, and I hope his life gets better in the future. 

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Hexadecimal: The Mathematical Fountain of Youth

hexadecimal

An average human life-span in the 70s seems much better now that I’m back before the midway-point. =D

On Motivation, 9th Graders, and Pi

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last six digits of pi

Four Sets of Five Circles On Each of the Faces of a Dodecahedron

Dodecahedron

After using Geometer’s Sketchpad and MS-Paint to make the image on the faces (seen alone in the last post), I then used Stella 4d: Polyhedron Navigator to project these images onto a red dodecahedron, and create this .gif. Stella is available, including as a free trial download, at http://www.software3d.com/Stella.php.

Want Some Really Big Numbers? Here Are the Zoogol and the Zoogolplex.

zoogol

Portmanteaus of the words “zillion” and “googol” / “googleplex,” these two new number-names are offered for the use of anyone who feels a need for even more named numbers which are ridiculously larger than the number of particles known to exist. The vast majority of those particles are neutrinos, by the way, but fewer than a googol (let alone a zoogle) neutrinos are estimated to exist in the entire observable universe.

To write a zoogle out the long way, simply write a “1,” then follow it with a “mere” one million zeroes. To my knowledge, this has never been done, but it certainly is possible. To write out a zoogleplex the long way, you’d need to follow the “1” with a zoogol zeroes, but this is not possible, due to a lack of enough matter or space, in the entire universe, for such a task.

Pop quiz: which is larger: a googleplex, or a zoogle? Scroll down to find the answer, whenever you are ready.

 

 

 

 

 

 

 

(keep scrolling….)

 

 

 

 

 

A googolplex is vastly larger than a zoogol. However, all other numbers mentioned earlier in this post are dwarfed by a zoogolplex. However, even a zoogolplex is less than 1% of 1% of 1% of . . . 1% of infinity, no matter how long one makes the “of 1%” chain.

A Rhombic Mandala Based on Pi Over Nine

ninthsThe interior angles in these rhombi all measure π/9 radians, or some whole-number multiple of that amount, up to 8π/9 radians.

Spectral Golden Spiral II

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spectral golden spiral 2

Deliberately Difficult to Watch

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I’ve never tried this before: create a rotating polyhedral image which is difficult to watch, using disorienting effects, such as the rotation of the images of spirals on the rotating faces. The spiral is made of golden gnomons (obtuse triangles with a base:leg ratio which is the golden ratio). This image, alone and without comment, is shown in the previous post, and was made using Geometer’s Sketchpad and MS-Paint. In the preparation for this post, it was further altered, including the projection of it onto the faces of a great rhombicosidodecahedron, and creating this rotating .gif. This part of the process was performed using a program called Stella 4d: Polyhedron Navigator, available here. You be the judge, please: is it, in fact, difficult to watch? Did I accomplish my (admittedly rather odd) goal?

Spectral Golden Spiral

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Spectrral Golden Spiral