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you the beautiful images that you see today, we had to very precisely measure the curvature of those mirrors. so we came up with algorithms and technology to be able to do that, and we transferred that to the ophthalmology community, so that they can scan the surface of your eye very, very precisely and very quickly, so that they can determine astigmatisms, far—sightedness, near—sightedness. 0n the international space station, we have a system that has to capture the waste water there, the water from your respiration, from your sweat and from your urine, and be able to take that and transfer it into drinking water. and apparently good—tasting drinking water. they can actually take very contaminated water out in the field, that is filled with bacteria, and be able to process that water to get 99% of the bacteria and everything out of that so that you can have pure drinking water in remote locations. when you have really impossible dreams and impossible goals, if you reach for those goals

Images , Technology , Mirrors , Ophthalmology-community , Algorithms , Eye , Curvature , Surface , System , Space-station , Waste-water , Astigmatisms

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are coming out.— of the new space companies that are coming out. does space have are coming out. does space have a role in helping _ are coming out. does space have a role in helping us _ are coming out. does space have a role in helping us solve - a role in helping us solve terrestrial issues as yellow absolutely. the james west space telescope. in order for those mirrors to give individual images we had today. we had a very precisely measure the curvature of those mirrors, so we came up with algorithms and technology to be able to do that, and we did that to scan the surface of your eye very precisely and quickly, so they could determine astigmatism's farsightedness, nearsightedness fa rsightedness, nearsightedness on the farsightedness, nearsightedness on the international space station. we have a system that has to capture the waste water there, the water from your respiration, from your sweat and from your urine and be able to take that and transfer it into drinking water, and apparently good taste in drinking, they can actually take very contaminated water out of a field that is filled with bacteria and be able to process that water to get 99%

Space , Images , Us , Space-companies , Role , Mirrors , Helping , Issues , Yellow , Order , James-west-space-telescope , Technology

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this is absolutely critical. there's no way that nasa can do this alone, and there's no way that all of the agencies, the international agencies that nasa partners with, there's no way that they could do it alone. you think about spacex, in the united states, space has gotten where it is in collaboration and partnership with nasa. nasa has invested quite a bit of money in spacex to help get where they are, and we are going to continue working with private industry companies like spacex and some of the new space companies that are coming out. does space have a role in helping us solve terrestrial issues? absolutely. the james webb space telescope — in order for those mirrors to give you the beautiful images that you see today, we had to very precisely measure the curvature of those mirrors. so we came up with algorithms and technology to be able to do that, and we transferred that to the ophthalmology community so that they can scan the surface of your eye very, very precisely and very quickly,

Way , Nasa , Spacex , Agencies , All , Partners , Space , Bit , Companies , Us , Industry , Collaboration

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all of the agencies, the international agencies that nasa partners with, there's no way that they could do it alone. you think about spacex, in the united states, space has gotten where it is in collaboration and partnership with nasa. nasa has invested quite a bit of money in spacex to help get where they are, and we are going to continue working with private industry companies like spacex and some of the new space companies that are coming out. does space have a role in helping us solve terrestrial issues? absolutely. the james webb space telescope — in order for those mirrors to give you the beautiful images that you see today, we had to very precisely measure the curvature of those mirrors. so we came up with algorithms and technology to be able to do that, and we transferred that to the ophthalmology community so that they can scan

Way , Space , Nasa , All , Spacex , Us , Agencies , Collaboration , Partners , Partnership , Companies , Bit

"A geometric morphometric approach to investigate primate proximal phal" by Sophie E. Wennemann, Kristi L. Lewton et al.

Current approaches to quantify phalangeal curvature assume that the long axis of the bone's diaphysis approximates the shape of a portion of a circle (included angle method) or a parabola (second-degree polynomial method). Here we developed, tested, and employed an alternative geometric morphometrics-based approach to quantify diaphysis shape of proximal phalanges in humans, apes and monkeys with diverse locomotor behaviors. 100 landmarks of the central longitudinal axis were extracted from 3D surface models and analyzed using 2DGM methods, including Generalized Procrustes Analyses. Principal components analyses were performed and PC1 scores (>80% of variation) represented the dorsopalmar shape of the bone's central longitudinal axis and separated taxa consistently and in accord with known locomotor behavioral profiles. The most suspensory taxa, including orangutans, hylobatids and spider monkeys, had significantly lower PC1 scores reflecting the greatest amounts of phalangeal curvature. In contrast, bipedal humans and the quadrupedal cercopithecoid monkeys sampled (baboons, proboscis monkeys) exhibited significantly higher PC1 scores reflecting flatter phalanges. African ape (gorillas, chimpanzees and bonobos) phalanges fell between these two extremes and were not significantly different from each other. PC1 scores were significantly correlated with both included angle and the a coefficient of a second-degree polynomial calculated from the same landmark dataset, but had a significantly higher correlation with included angles. Our alternative approach for quantifying diaphysis shape of proximal phalanges to investigate dorsopalmar curvature is replicable and does not assume a priori either a circle or parabola model of shape, making it an attractive alternative compared with existing methodologies.

Generalized-procrustes , Curvature , Eometric-morphometrics , Ncluded-angle , Halanx , Uspensory ,

Gutfeld

spy satellites constantly monitor military bases in china and russia looking at u.s. troops -- adversaries true movements in china and russia, any movement in ukraine as well but does not appear the satellites were able to detect the last two objects to even the spy craft earlier a week ago. right now alaska is using ground-based radar to pick these up when it comes to the curvature of the earth, the ground radar can only see so f far. jon: you are a navy veteran, you know how these things go, assuming the pilot of the f-22 or 20 choose that shot down both objects, they don't just show up a couple of miles away and pulled the trigger, they do a visual inspection of these things as they fly by in most cases, do they not? they probably have a good idea of what it is we are talking about whether a balloon or a drone, you described from the pentagon as being roughly the

U-s- , Objects , China , Spy-satellites , Satellites , Russian , Movements , Military-bases , Movement , Troops , Ukraine , Two

Unfiltered With Dan Bongino

talking about probing looking at us air defenses is just notable that satellites did not appear to pick up these spycraft and it was ground search radar. that did, but of course, that's very limited to the curvature of the earth. you're not going to pick those up in this case the last two until they had already breached u s airspace. lawrence you know, lucas, i a lot of folks don't know this, but you you have a deep experience in the military. you were in the academy, so i want you to put that hat on for a second. what is the us doing right now that we have it seems like all these unidentified identified aircrafts or whatever they are. drones are just making their way now. so what is our positioning right now, uh, from a defense standpoint. what are we doing? well, lawrence. you know, when you're looking through old emails, you're trying to figure out where to find him. not just going through emails one by one. you're doing keyword searches. the reason that these some of these spycraft were detected during the trump administration was because they're taking this data they're collecting from these balloons are going back to the system because the u. s

Course , Case , Satellites , Air-defenses , Ground-search-radar , Curvature , Earth , Two , Lucas-thomason , Airspace , United-states , Experience

Fox News Live

launches they are looking north korea going out class they are based on the explosion of the blast from the pan with perceived missiles moving out from the basis that is what u.s. spy satellites do they count tanks they count aircraft deliver enemy troop movements, and mysteries russia, of course on the ground in ukraine. it comes to the spy balloons spy craft to every winter column is very apparent the u.s. military is having difficulty detecting the imprint on being spotted from ground-based radar. what limits and ground-based radar of course is the curvature of the earth. it is very notable noren has completely heard from north's commanding officer saying it is a gap in u.s. military sensors. these last three objects shot down friday, saturday enough today were not spotted until they were already over u.s. airspace. officials say that is a very

U-s- , Missile , Missiles , Spy-satellites , Basis , Explosion , Class , Tanks , Blast , Pan , North-korea , Military

The Big Saturday Show

ballistic missile interceptors. >> a quick question here, we had two objects in one spy craft confirmed, why are we having trouble picking these objects up on radar? >> officials tell me satellite is having trouble picking it up. airborne satellites in space are used to discover ballistic missile launches out of north korea and other places when things go boom, i are birds exploding, a lot of things in there memory thanks. right now balloons is not what they are programmed to discover. satellites are used to count aircraft and airplanes on different bases over russia, china, missile silos and over ukraine. right now spy objects is. to only be discovered based on ground-based radar. the curvature of the earth will limit what the radar can see.

Question , Objects , Ballistic-missile , Interceptors , Spy-craft , Two , One , Trouble , Satellites , Space , Satellite , Officials

Fox Report With Jon Scott

i'm frankly a little surprised the pentagon is even admitting that. quickset is right, jon. spice highlights orbiting overhead and space are designed to look for a ballistic for their use for counting aircraft and troop movements of course over ukraine. it appears these objects have only been spotted by ground-based radar limited by the curvature of the earth much harder to detect as we just buy out the yesterday but appears once again today this object over canada with her over neurite airspace the nato airspace canada and united states, jon. jon: lucas thomas in a life of the white house over second shootdown, lucas thank you. lieutenant colonel daniel davis joins us now for the senior fellow military expert at defense priorities. after these bible and cross into our airspace a chinese head is just a weather balloon. it is just an accident don't get your knickers in a twist.

Jon-scott , Pentagon , Movements , Space , Counting-aircraft , Course , Quickset , Use , Ballistic , Troop , Orbiting , Spice