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Monday, March 20, 2017

This stock is about to receive a buy out at 10 times its current market price...

Dear Subscriber,

It's been a long time since I sent you my special newsletter containing a hot stock tip.
The reason for that is because I really haven't had many opportunities to present to you.

Incapta Inc (ticker: INCT) is a company that was brought to my attention earlier this morning
by one of my colleagues at an M&A firm in manhattan.

It seems that a buy out from DJI is imminent at $1.37 per share and is set to be announced
next week on Tuesday, March 28.

INCT is a company that has revolutionized the drone industry by creating the first independent drones
that can be dispatched to areas of interest such as crime scenes, car chases, wild fires, etc.

The network of drones operates by connecting to a cloud and complex algorithms efficiently dispatch the drones
within moments of an incident being reported.

This way the media outlet that owns the drones can be the first to the scene and get exclusive, live-streamed.

This has the potential to literally change the world of news broadcasting as we know it and DJI
(the most prominent drone-maker in the world) sees the potential of this technology which is why
they are willing to pay $1.37 a share to acquire it. A premium of over 1,000% over Friday's closing price.

Tell all your friends about INCT and make sure you buy it as soon as possible today at any price under
20 cents a share to guarantee yourself massive profits.

This stock is about to receive a buy out at 10 times its current market price...

Dear Subscriber,

It's been a long time since I sent you my special newsletter containing a hot stock tip.
The reason for that is because I really haven't had many opportunities to present to you.

Incapta Inc (ticker: INCT) is a company that was brought to my attention earlier this morning
by one of my colleagues at an M&A firm in manhattan.

It seems that a buy out from DJI is imminent at $1.37 per share and is set to be announced
next week on Tuesday, March 28.

INCT is a company that has revolutionized the drone industry by creating the first independent drones
that can be dispatched to areas of interest such as crime scenes, car chases, wild fires, etc.

The network of drones operates by connecting to a cloud and complex algorithms efficiently dispatch the drones
within moments of an incident being reported.

This way the media outlet that owns the drones can be the first to the scene and get exclusive, live-streamed.

This has the potential to literally change the world of news broadcasting as we know it and DJI
(the most prominent drone-maker in the world) sees the potential of this technology which is why
they are willing to pay $1.37 a share to acquire it. A premium of over 1,000% over Friday's closing price.

Tell all your friends about INCT and make sure you buy it as soon as possible today at any price under
20 cents a share to guarantee yourself massive profits.

Friday, March 17, 2017

JPL News - Day in Review

 

DAY IN REVIEW
NASA JPL latest news release
COBALT Flight Demonstrations Fuse Technologies to Gain Precision Landing Results

Many regions in the solar system beckon for exploration, but they are considered unreachable due to technology gaps in current landing systems. The CoOperative Blending of Autonomous Landing Technologies (COBALT) project, conducted by NASA's Space Technology Mission Directorate (STMD) and Human Exploration and Operations Mission Directorate, could change that.

Through a flight campaign this month through April, COBALT will mature and demonstrate new guidance, navigation and control (GN&C) technologies to enable precision landing for future exploration missions.

"COBALT will allow us to reduce the risk in developing future landing systems and will benefit robotic landers to planetary surfaces by allowing for autonomous precision landing," said LaNetra Tate, STMD's Game Changing Development (GCD) program executive. "This will definitely become a game-changing technology."

The campaign will pair and test new landing sensor technologies that promise to yield the highest-precision navigation solution ever tested for NASA space landing applications.

The technologies, a Navigation Doppler Lidar (NDL), which provides ultra-precise velocity and line-of-sight range measurements, and the Lander Vision System (LVS), which provides terrain relative navigation, will be integrated and flight tested aboard a rocket-powered vertical takeoff, vertical landing (VTVL) platform. The platform, named Xodiac, was developed by Masten Space Systems in Mojave, California.

"In this first flight campaign, we plan to successfully complete the integration, flight testing and performance analysis of the COBALT payload," explained John M. Carson III, COBALT project manager. "This is considered a passive test, where COBALT will be solely collecting data, while the Xodiac vehicle will rely on its GPS for active navigation.""

In a follow-up flight campaign in summer 2017, COBALT will become the active navigation system for Xodiac, and the vehicle will use GPS only as a safety monitor and backup.

"The knowledge from these flights will lead into the development of systems for deployment in future NASA landing missions to Mars and the moon," said Carson.

So how does it work?

The technologies themselves are very different, but together they are a recipe for precision landing.

The NDL, developed at NASA's Langley Research Center (LaRC), is an evolution of a prototype flown by the former ALHAT (Autonomous precision Landing and Hazard Avoidance Technology) project on the NASA Morpheus vehicle in 2014. The new NDL is 60 percent smaller, operates at nearly triple the speed and provides longer range measurements.

"NDL functionally is similar to the radar systems used in previous Mars landers, Phoenix and Mars Science Laboratory," explained Farzin Amzajerdian, NDL chief scientist at Langley. "The major difference is that the NDL uses a laser instead of a microwave as its transmitter. Operating at almost four orders of magnitude higher frequency makes the measurement a whole lot more accurate. NDL also is much smaller than radar systems, which is a big deal as every ounce counts when sending a lander to Mars or other destinations."

LVS, developed at NASA's Jet Propulsion Laboratory, is a camera-based navigation system that photographs the terrain beneath a descending spacecraft and matches it with onboard maps to determine vehicle location, explained Carl Seubert, the COBALT project lead at JPL.

"This allows the craft to detect its location relative to large landing hazards seen in the onboard maps, such as large boulders and terrain outcroppings," Seubert said.

COBALT is one springboard for these technologies, which will find their way into future missions. The NDL design is geared toward infusion onto near-term lunar, Mars or other missions. The LVS was developed for infusion onto the Mars 2020 robotic lander mission, and has application to many other missions.

"Both NDL and LVS come from more than a decade of NASA research and development investments across multiple projects within robotic and human exploration programs, and from the hard work and dedication of personnel across the agency," said Carson.

"These COBALT technologies give moon and Mars spacecraft the ability to land much more precisely, improving access to interesting sites in complex terrain and to any exploration assets previously deployed to the surface," said Jason Crusan, director of NASA's Advanced Exploration Systems division. "Landings will also be more controlled and gentle, potentially allowing smaller landing legs and propellant reserves, and resulting in lower mission risk, mass and cost."

The COBALT team is managed at NASA's Johnson Space Center (JSC) in Houston, and comprises of engineers from JSC, JPL in Pasadena, California, and LaRC in Hampton, Virginia. All three centers will jointly conduct the flight campaign and post-flight data analysis.

"The progress and success of the COBALT project has relied on the team dynamic between NASA centers that started during the prior ALHAT project," said Carson. "The team has a common goal to develop and deploy precision landing GN&C technologies, and they maintain constant communication and a focus on collaboration to iron out the technical challenges and operational constraints required to develop, interface and successfully test the sensors and payload."

COBALT involves multiple NASA programs, including the Human Exploration and Operations Mission Directorate's Advanced Exploration Systems (AES), and the Game Changing Development and Flight Opportunities programs, both under STMD. In collaboration with the AES program, NASA is paving the way to reach farther into space.

Based at NASA's Armstrong Flight Research Center in Edwards, California, the Flight Opportunities program funds technology development flight tests on commercial suborbital space providers of which Masten is a vendor. The program has previously tested the LVS on the Masten rocket and validated the technology for the Mars 2020 rover.

The COBALT flights will demonstrate blended LVS and NDL measurement viability for the precise, controlled soft landing of future missions. While the sensors are key enablers for future human and robotic landing missions to Mars, the moon and other solar system destinations, the COBALT payload also will provide a reusable platform for integration and testing of other precision landing and hazard avoidance capabilities developed within NASA or industry.

For more information about the COBALT project, visit:

https://gameon.nasa.gov/cooperative-blending-of-autonomous-landing-technology-cobalt/

For more information about the Flight Opportunities program, visit:

https://www.nasa.gov/directorates/spacetech/flightopportunities/index.html

 


This message was sent to chantybanty1.chanti@blogger.com from:

NASA Jet Propulsion Laboratory | jplnewsroom@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109

Thursday, March 16, 2017

The Answers to NASA's Pi Day Challenge Are Here!

 

NASA Pi Day Challenge – Answer Key
 

The Answers to NASA's Pi Day Challenge Are Here!

The Education Office at NASA's Jet Propulsion Laboratory has released the official answers to its fourth annual Pi Day Challenge. The illustrated answer key is available to view online and download as a free poster.

The NASA Pi Day Challenge is an annual math puzzler created in honor of the March 14 holiday celebrating the mathematical constant pi – but it's applicable all year! The illustrated math problem set features real problems NASA scientists and engineers must solve to explore space. It's designed to get students excited about math and its applications beyond the classroom. In this year's puzzler, participants can use pi to deduce the angle of crater impacts on Mars, measure the size of the shadow that will fall on North America during the 2017 total solar eclipse, determine the orbital period of the Cassini spacecraft during its final weeks around Saturn, and find the habitable zone around TRAPPIST-1, a star that is home to seven Earth-size planets! The four new problems and full 16-problem set can be found on the NASA/JPL Education website.

Follow the links below to explore more:

 


This message was sent to chantybanty1.chanti@blogger.com from:

NASA/JPL Edu | education@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109

Wednesday, March 15, 2017

JPL News - Day in Review

 

DAY IN REVIEW
GRACE Mission: 15 Years of Watching Water on Earth
In 15 years of operations, the GRACE satellite mission has dramatically changed our view of how water moves and is stored on Earth.
› Read the full story
Experiments Show Titan Lakes May Fizz with Nitrogen
A recent NASA-funded study has shown how the hydrocarbon lakes and seas of Saturn's moon Titan might occasionally erupt with dramatic patches of bubbles.
› Read the full story

 


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NASA Jet Propulsion Laboratory | jplnewsroom@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109

Tuesday, March 14, 2017

JPL News - Day in Review

 

DAY IN REVIEW
NASA JPL latest news release
Could Leftover Heat from Last El Niño Fuel a New One?

Some climate models are suggesting that El Niño may return later this year, but for now, the Pacific Ocean lingers in a neutral "La Nada" state, according to climatologist Bill Patzert of NASA's Jet Propulsion Laboratory, Pasadena, California. The latest map of sea level height data from the U.S./European Jason-3 satellite mission shows most of the ocean at neutral heights (green), except for a bulge of high sea level (red) centered along 20 degrees north latitude in the central and eastern Northern Hemisphere tropics, around Hawaii. This high sea level is caused by warm water.

Whether or not El Niño returns will be determined by a number of factors, one of which is the larger stage on which El Niño and La Niña play, the Pacific Decadal Oscillation (PDO). The PDO is a large-scale, long-term pattern of ocean temperature and other changes in the Pacific Ocean. It alternates between two phases, warm (called positive) and cool (negative), at irregular intervals of 5 to 20 years.

The phases of the PDO are known to affect the size and frequency of the shorter-term El Niño and La Niña events. In its positive phase, the PDO encourages and intensifies El Niños. In its negative phase, it does the same for La Niñas. The last PDO phase shift was in 2014, when it turned strongly positive and has remained that way for 37 months.

Patzert says a look back over the three years since the PDO's 2014 phase shift provides some clues about why the 2015-16 El Niño was so large and long-lasting, and why the 2016 La Niña was so small.

In 2014, Patzert says, the trade winds (the prevailing winds that blow from east to west over Earth's tropical oceans) in the Pacific Ocean weakened, and a modest El Niño waxed and waned throughout the year. It never fully developed, but it left the equatorial Pacific warmer than normal. In 2015, the trade winds dramatically weakened, triggering a big El Niño with major worldwide impacts. With a large pool of warm equatorial water to draw on, it formed early and strengthened for more than a year, reaching full strength in late January 2016 -- unusually late for an El Niño event.

Besides being long-lived, the 2015-16 El Niño was also unusually large in area, with high sea levels and warm water spreading as far north as Hawaii. As the main region of the El Niño waned, this warm bulge north of the equator remained.

During the summer of 2016, a La Niña was thought to be imminent, but it never truly took hold. By November 2016, the equatorial Pacific Ocean was in the neutral condition it remains in now. The high sea level visible as a red area around Hawaii in the new image is caused by warmth left over from the last El Niño.

Patzert postulates that the leftover warm-water bulge was responsible for the lackluster La Niña. "Did the warm bulge suppress the trade winds in the eastern and central Pacific, muting the conditions required for a full-blown La Niña to form?" he asks. "As all El Niño researchers know, no two El Niño or La Niña episodes are exactly the same."

Patzert and other researchers have additional questions about the PDO's influence. What role did the 2014 PDO phase shift play in the events of the last three years? Does the ongoing ocean warmth signal that the current positive PDO phase will be long lasting -- perhaps decadal -- or will it be a shorter-term blip? NASA scientists will continue to monitor the Pacific to see what's in store next for the world's climate.

Either way, Patzert notes, the PDO will be a factor in future climate patterns. "A warmer or cooler Pacific Ocean will certainly play a big role in future El Niño and La Niña events. That's important, because these events modulate drought and deluge patterns in the American West, as well as the rate of climbing global temperatures," he says.

For a time sequence of the evolution of Pacific Ocean sea surface heights from 2014 to the present, see:

http://sealevel.jpl.nasa.gov/science/elninopdo/latestdata/archive/

To learn more about NASA's satellite altimetry programs:

http://sealevel.jpl.nasa.gov

For more on NASA's Earth science activities, visit:

http://www.nasa.gov/earth

 


This message was sent to chantybanty1.chanti@blogger.com from:

NASA Jet Propulsion Laboratory | jplnewsroom@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109

Monday, March 13, 2017

Celebrate Pi Day With NASA

 

Celebrate Pi Day Like a NASA Rocket Scientist
 

Celebrate Pi Day With NASA

NASA is giving space fans a reason to celebrate Pi Day, the March 14 holiday created in honor of the mathematical constant pi. For the fourth year in a row, the agency's Jet Propulsion Laboratory has created a Pi Day Challenge featuring math problems NASA scientists and engineers must solve to explore space. This year's illustrated problem set (also available as a free poster!) features Mars craters, a total solar eclipse, a close encounter with Saturn, and the search for habitable worlds. Follow the links below to participate in the challenge and discover more ways to celebrate Pi Day with NASA.

The answers to the Pi Day Challenge will be released on March 16.

 


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NASA/JPL Edu | education@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109

Friday, March 10, 2017

JPL News - Day in Review

 

DAY IN REVIEW
NASA JPL latest news release
NASA Studying Shared Venus Science Objectives with Russian Space Research Institute

A team of NASA-sponsored scientists will meet with the Russian Academy of Sciences' Space Research Institute (IKI) next week to continue work on a Joint Science Definition Team study focused on identifying shared science objectives for Venus exploration. The visit comes after a report was recently delivered to both NASA Headquarters in Washington and IKI in Moscow, assessing and refining the science objectives of the IKI Venera-D (Venera-Dolgozhivuschaya) Mission to Venus, Earth's closest planetary neighbor.

"While Venus is known as our 'sister planet,' we have much to learn, including whether it may have once had oceans and harbored life," said Jim Green, director of the Planetary Science Division at NASA Headquarters in Washington. "By understanding the processes at work at Venus and Mars, we will have a more complete picture about how terrestrial planets evolve over time and obtain insight into the Earth's past, present and future."

Venus has intrigued scientists for decades. Similar to Earth in composition and size, it spins slowly in the opposite direction. The rocky world's thick atmosphere traps heat in a runaway greenhouse effect, making it the warmest planet in our solar system with surface temperatures hot enough to melt lead. Glimpses below the clouds reveal volcanoes and an intricate landscape. Venus is named for the Roman goddess of love and beauty, the counterpart to the Greek goddess Aphrodite.

"On a solar-system scale, Earth and Venus are very close together and of similar size and makeup," said David Senske, co-chair of the U.S. Venera-D science definition team, and a scientist at NASA's Jet Propulsion Laboratory in Pasadena, California. "Among the goals that we would like to see if we can accomplish with such a potential partnership is to understand how Venus' climate operates so as to understand the mechanism that has given rise to the rampant greenhouse effect we see today."

The IKI Venera-D mission concept as it stands today would include a Venus orbiter that would operate for up to three years, and a lander designed to survive the incredibly harsh conditions a spacecraft would encounter on Venus' surface for a few hours. The science definition team is also assessing the potential of flying a solar-powered airship in Venus' upper atmosphere. The independent flying vehicle could be released from the Venera-D lander, enter the atmosphere, and independently explore Venus' atmosphere for up to three months.

NASA first visited Venus when the JPL-managed Mariner 2 collected data during a flyby in December 1962. NASA's last dedicated mission to explore Venus was Magellan. Launched in 1990, and managed by JPL, Magellan used radar to map 98 percent of the planet at a resolution of 330 feet (100 meters) or better during its four-year mission.

The Venera spacecraft program is the only one to date to successfully land on Venus and survive its harsh environment. Said Adriana Ocampo, who leads the Joint Science Definition Team at NASA Headquarters in Washington, "This potential collaboration makes for an enriching partnership to maximize the science results from Venera-D, and continue the exploration of this key planet in our solar system."

More information about Venus can be found at:

https://solarsystem.nasa.gov/planets/venus

 


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Celebrate Pi Day Like a NASA Rocket Scientist

 

Celebrate Pi Day Like a NASA Rocket Scientist
 

Celebrate Pi Day Like a NASA Rocket Scientist

NASA is giving space fans a reason to celebrate Pi Day, the March 14 holiday created in honor of the mathematical constant pi. For the fourth year in a row, the agency's Jet Propulsion Laboratory has created an illustrated Pi Day Challenge featuring four math problems NASA scientists and engineers must solve to explore space. The challenge is designed to get students excited about pi and its applications beyond the classroom. This year's problem set, designed for students in grade six through high school – but fun for all – features Mars craters, a total solar eclipse, a close encounter with Saturn, and the search for habitable worlds.

 


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NASA/JPL Edu | education@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109

Thursday, March 9, 2017

JPL News - Day in Review

 

DAY IN REVIEW
New NASA Radar Technique Finds Lost Lunar Spacecraft
A new technological application of interplanetary radar pioneered by JPL scientists has successfully located spacecraft orbiting the moon -- one active, and one dormant.
› Read the full story
NASA Mars Orbiter Tracks Back-to-Back Regional Storms
A regional dust storm currently swelling on Mars follows unusually closely on one that blossomed less than two weeks earlier and is now dissipating, as seen in daily global weather monitoring by NASA's Mars Reconnaissance Orbiter.
› Read the full story
NASA Mission Named 'Europa Clipper'
NASA's upcoming mission to investigate the habitability of Jupiter's icy moon Europa now has a formal name: Europa Clipper.
› Read the full story

 


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NASA Jet Propulsion Laboratory | jplnewsroom@jpl.nasa.gov | NASA's Jet Propulsion Laboratory | 4800 Oak Grove Dr | Pasadena, CA 91109