Now at first glance it looks kind of like the other one. We see there's a bunch of static and that's just our measurement uncertainty. But then you see these dips here d the the weird thing is they don't look periodic. Theydon't look like they recur at regular intervals. they seem kind of erratic and it doesn't always go down by the same
So do you have something that kind of looks like it might be pre-diabetes heading on the road toward a more classic measurement of disease, like your hemoglobin A1C being too high-- you're unable to control your blood sugar.Can we see it?
And it's easy to look back at it now, view it from today, and you look at this as a simple-minded deficiency measurement run amok. And he would be satirized by Charlie Chaplin in "Modern Times" with machines grinding you up.But in its day, it was seen as a liberating movement.
been successful. And then, how do you know who this guy is? measurement discipline happens incrementally one step at a time.
want to measure, in this case, the margin of victory is significantly smaller than the uh the errors in measurement , well, you fail. you're stuck. You simply can't make a determination. There's no way to tellwho won. In other words, it's a tie.
doesn't float around in space. measurement . Meanwhile, in a patent library in Switzerland, a young man who was rather clever was beavering away and coming
missile threat is much bigger than people realize because they're hearing measurements well we've destroyed x% and y% and that's why you're getting the question but if you look at this mapthis is what they where these drones these shah Heeds 136 could literally be
Right? And basically all the devices in the classical kind of health industry-- they rely on those standardized measurements . They're the same for everybody.Right? So are you guys thinking more about that field, going more in that-- So right now the message is primarily,
They are using different instruments on board, from radar to optical imagery to larger-scale, wider-scale measurements of oceans on the land surfaces to atmospheric trace gases.So you see here on the left-hand side Sentinel-1, which is a center that provides 10-meter resolution in the radar domain.
the main job and then of course we have to convert all uh all uh the measurements because this is a Edition for the American Market we also have anEdition for the English and Australian Market but we really wanted to have a book that is very friendly it's very
of images of the South polar ice cap and uh again more detailed temperature measurements showed that conditions on this ice cap were so cold that in factthe carbon dioxide in the atmosphere froze out onto the surface as dry ice so
There's no longer any wave there, but Einstein asked the audience to think about what this means. The measurement here must instantly affect the wave function over here no matter how far apart these locations are. In other words, quantum mechanics requires instant influences across distance.
and to spark new theory. complicated measurement on all of the particles in order to recover the information.
Right. And it still didn't make their top 35 or 40. this measurement of efficiency?
And that's the spooky action at a distance that he invented. So measurement in Everett's version of quantum mechanics is just obeying the laws of physics.
that measurement somehow collapses that wave function, which, until the measurement happened, gave you probabilities of the photon as possibly being--
And this is typically one of the parameters that can be measured from space. Another measurement we are taking, very important, very critical, is sea level rise. We all know from newspapers, from TV, that global change is causing, among other things, an increase in temperature, but also an increase of sea level height, which
Poverty measurement is exceedingly difficult if it has to be done by household surveys.
the measurement , it's the approach and the measurement -- are private schools.
The measurement of the brightness is easy, but how do you know the luminosity?
the measurement of skulls-- and came up with some ideas that skulls can be classified according to-- for instance, a very simple classification is whether
No measurements . No measurements .
Quantum measurements are relative to the observer, as if it was something subjective.
Simultaneous measurements -- you would think we would have solved this.
Site measurements -- I touched on that briefly just there.
The first message is that the different colors are showing different families of Sentinels, meaning different observation technologies which are really providing measurements of all the parameters of the globe, which are the atmosphere, the oceans, polar regions, which are a system together.
these measurements or different ways to analyze that data.
Those measurements provide the evidence for what we believe.
those measurements in real time. Radiologists get really miserable feedback about whether
these measurements of investing performance that--like the sharp ratio, alpha, et cetera.
So the measurement in the lab gave us 36 ohms of real resistance and 74 ohms of reactance, so we have to match that impedance.
- The most sensitive measurement ever made at the frequencies that the human heartbeat work at is at the 10 to the -15 Tesla level.
And this includes any measurement they make of the speed of light.
- It does seem like it's the same thing, but now it's ramped up and you've got these two separate particles to do those two separate measurements and one measurement influencing the other measurement definitely feels wrong. - Yeah, exactly. I think he really realized that it's measurements that are the problem in quantum mechanics.
and this includes any measurement of the speed of light.
After taking the measurement , Joyner discovered he couldn't pull the prisms apart.
like manual measurement . It's not a thing that stably exists. It's not a
A truly accurate measurement can take days to calculate.
Second big topic-- measurement and definition of happiness.
And the probability is largest where the wave function was largest. And after the measurement has occurred, the wave function changes to be localized where you observed it. So on the left here, you have a picture of a wave function that might be all spread out for an electron.
when you do look at them. Because the act of measurement is something special. It really does something to the particle in a particular way.
It just says, don't worry about that. You know a measurement when you see it. I think that's not quite good enough to be a fundamental theory of nature.
And that's the spooky action at a distance that he invented. And after that measurement , either the cat was awake and the observer measured it to be awake, or the cat was asleep
with errors in scientific measurement .
And you get measurement error.
But it's a measurement of Earth or land.
And he had a measurement there from Alexandria to Syene of 5,000 stadia.
is there some measurement that you guys do?
So this act of measurement kind of collapsing the wave function is a huge issue in quantum mechanics, because quantum mechanics basically
Until you did a measurement , the probabilities existed in this wave function, but the moment you