The Outerspace Handbook for Spies

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Sign in. Lost Password? Figure 30—29 Insert the IC chips according to pin 1 orientation and watch out for bent or misaligned pins. Figure 30—34 Be careful not to bend the two back channel guides. Figure 30—35 Cut wire for the antenna and ground connections. Figure 30—38 connections. Cut wire for the power Project Now you can see the problem previously mentioned in Figure The audio output resistors are wired directly to the rear panel and the main circuit board. Any movement of either the circuit board or the rear panel during the remaining assembly steps will shear these resistors off from their leads.

Therefore, you wire connections and save yourself a headache later. Figure 30—40 Here is the second area for user modification. The chassis top and bottom panels will not safely slide into the chassis channel guides. They were manufactured to the same width as the side panels and they will not fit. On the bottom panel just make sure you remove the metal from the side opposite the two spacer mounting holes.

Figure 30—41 Use a reamer or screwdriver for aligning holes in the chassis. Test fit the chassis top Figure 30—44 When all tests and tuning steps are complete, disconnect the test crystal by cutting Jumper 6. Figure 30—47 You can change the software parameters for enabling anyone to participate in the Radio JOVE program from anywhere in the world. Using a Receiver for Radio Astronomy Project Mac owners can join in the fun by using GarageBand to create a visual representation of your Jovian and solar observations. Just be aware that this only presents visual data, not scientific data.

A special collaborative feature is built into the PC-only software that accompanies this project. Figure 35—2 Use QuickTime 7 Pro to make a new audio recording. Share Your Sounds with Podcasts Project During the recording, add commentary, music, and sound effects for a more complete podcast. Figure 35—4 Your finished recording will be an audio. Then, publish your podcast with iTunes and share your Jovian mash-up with the rest of the universe.

Astonishingly, not everyone is totally sold on this concept of searching for extraterrestrial intelligence. This project was soon cancelled by Senator William Proxmire in Registered members of this project receive data collected from the 1,foot diameter Arecibo Radio Telescope in Puerto Rico. Then, your computer does all the searching for you. This spike would be a narrow frequency band around MHz and it would last about 12 seconds. Figure 36—2 Select a project you would like to support with your donated computer time.

You will also receive your first packet of data to analyze. Figure 37—2 To dedicate maximum CPU time to your project, enable your screen-saver timer for its lowest value. Figure 38—4 This is what data from space really looks like. This will dedicate maximum CPU time to your project. Either way, your collaborative efforts will have your donated hours logged into a lump sum for the whole team. You will need a dedicated Linux-based network server for this project, however.

But I like ant farm better. Betelgeuse is a red supergiant star with a variable intensity exhibiting a period of change lasting approximately seven years. It sits in the shoulder of the famed constellation Orion, directly opposite Bellatrix. While almost every evil genius knows this little bit of stellar star stuff, not many can finger where those funky names came from and who coined them. The bulk of our named stars are derived from the Arabs and Greeks.

The Outer Space Handbook for Spies: The Journey Home

Pretty nifty, eh? In the eighteenth century, Royal Astronomer Reverend John Flemsteed assigned numbers to his listing of stars based on the 48 primary constellations. His naming convention was published in a star catalog called Uranometria. Remember, Betelgeuse is a variable star. Just like these astronomers of yesteryear, other scientists have published star catalogs that have added to our naming conventions.

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How many objects can you list in your catalog? For example, find a star or other celestial object. Center it in your telescope. Now, record all the data for altitude, azimuth, right ascension, and declination. Some astronomers claim it looks like a teapot. What do you think it looks like?

First, find Sagittarius. Inside this heart is where you can see a teapot. In fact, M54, M70, and M69 form the base of this teapot. Begin your star-charting exercises by making your own observations of a wellknown star group. For example, choose the Big Dipper or Orion. Include as many references for example, position, attitude, date, time, and magnitude for each star as you can see with your binoculars. Then, use your naked eyes to fill in any blanks in your star chart. Show the completed chart to someone else and have them try to name the star group. Consider yourself a percent evil genius if that certain someone correctly names this star group.

Now, see if you can envision what the early astronomers thought this constellation looked like. What were they thinking? Can you see a black hole?

Its very similar to Rise of Mythos and Kings and Legends

Well, way up near the head of Scorpius inside its left pincer resides a dense binary star. Some astronomers speculate this invisible companion could be a black hole. Pick a Ride on the Tail of a Comet Figure 50—5 The internal lamp can either project the constellations on a ceiling or wall, or it can be used for charging the phosphorescent stars, enabling them to glow in the dark.

Figure 50—6 A dark room is ideal for viewing the Star Theater 2 planetarium show. Ask them who invented the telescope. In less time than it takes to pose this question, you might have two distinctly different opinions: Hans Lipperhey vs. Galileo Galilei. Actually, both answers could be correct. One astronomer was answering your question based on technical merits, while the other was answering it on a philosophical basis.

OK, here goes. Another Dutch experimenter, Sacharias Janssen, made a similar optical discovery around that same time. Now, if one of your combatants answered your question with Sir Isaac Newton, then you have another correct answer. Sort of. Not content with the size limitations of Galileo-type refracting telescopes, Newton built a telescope that used a mirror for gathering and reflecting light to another mirror.

This second mirror then reflected the light into an eyepiece. This invention, which was completed in , was the reflecting telescope. What are you waiting for? The purpose for this telescope was for observing the sky around the Earth. This Italian was Galileo. And, with his telescope, Galileo made numerous astronomical observations, including the moons of Jupiter and nearby nebulae. Figure 51—2 Make no mistake, this is not a professional-grade telescope. The KJ-8 is an entry-grade telescope that balances minimal settings and lightweight construction against very good optics.

Figure 51—5 An eyepiece can be mounted directly on the focusing tube. Figure 51—7 eyepiece. An image-erecting Figure 51—8 A 3x Barlow lens. Figure 51—10 Ready for viewing or using as a spotting scope. Ahoy Mates, I Spy a Star Figure 51—11 This setup provides reasonably good images, but at the price of very sensitive hardware and a delicate tripod. Figure 51—12 You can easily snap an image with a digital camera through the eyepiece of the KJ Figure 52—2 The Aurora 70 features a 70mm objective with a mm focal length, uses 1.

How to Assemble a Refractor Telescope Project Figure 52—4 tripod mount. Attach the legs to the Figure 52—5 Carefully lift the tripod up with all three legs firmly positioned on the ground. Loosen the altitude Figure 52—8 The motor drive is attached to these two points.

How to Assemble a Refractor Telescope Figure 52—9 This right ascension shaft is used for connecting the motor drive to the telescope. Figure 52—10 Loosen this nut for holding the motor drive. Figure 52—11 Attach the motor-drive mounting plate. Figure 52—14 counterweight. Prepare the Project How to Assemble a Refractor Telescope Figure 52—12 Connect the motor drive shaft to the right ascension shaft.

Figure 52—16 Remove the wing nuts from the telescope saddle. Figure 52—17 Attach the saddle to the telescope mount. Figure 52—20 Remove the mounting nuts for the finder. Figure 52—23 Loosely attach the remaining tripod legs to the accessory tray. How to Assemble a Refractor Telescope Figure 52—24 Check the level and balance of the tripod, and then tighten the accessory tray screws. Figure 52—27 This diagonal can use 1. Figure 52—28 the diagonal. Now get out there and Project Figure 53—2 This is a highly portable, extremely powerful 4. Figure 53—5 Extend all three tripod legs to the same length.

How to Assemble a Reflector Telescope Figure 53—3 mount. How to Assemble a Reflector Telescope Figure 53—6 Use bolts and wing nuts for attaching each tripod leg to the tripod mount. Figure 53—8 Check all the other telescope mount screws for clearance around the tripod leg mounting wing nuts. Loosen the altitude Project How to Assemble a Reflector Telescope Figure 53—9 level the legs. Figure 53—12 Prepare the counterweight parts. Figure 53—13 counterweight. Figure 53—16 counterweight. Install the Project How to Assemble a Reflector Telescope Figure 53—14 Make sure you insert the counterweight set screw in the proper orientation.

If it is backward, the weight will slide loosely up and down the counterweight mounting shaft. How to Assemble a Reflector Telescope Figure 53—17 Attach the short flexible cable to the declination worm drive. Figure 53—18 Attach the long flexible cable to the right ascension worm drive. Figure 53—19 Loosely attach one tripod leg to the accessory tray. Figure 53—21 Loosely attach the remaining two tripod legs to the accessory tray. How to Assemble a Reflector Telescope Figure 53—22 Level both the tripod and telescope mounts, and then tighten the accessory tray bolts.

Figure 53—23 Attach the telescope saddle to the telescope mount. Figure 53—26 in the saddle.

Gently lay the telescope Project Figure 53—28 No diagonals are needed with a reflector telescope. Eyepieces are inserted directly into the focusing tube. Figure 53—29 A set screw will hold the eyepiece in place. Figure 53—32 Never touch this spider. How to Assemble a Reflector Telescope Figure 53—30 telescope tube.

How to Assemble a Reflector Telescope Figure 53—33 This is a professionally polished mirror that should be protected from moisture, dust, and abrasions. Figure 54—4 Do not overtighten the screws holding the rubber feet. How to Assemble a Dobsonian Telescope Figure 54—2 Dobsonian mount telescopes are currently the rage among amateur astronomers. Among the best in this line, the Zhumell inch Dobsonian accepts either 1.

How to Assemble a Dobsonian Telescope Figure 54—5 rubber feet. Set the base on its Figure 54—6 The parts of the basecenter rotating mount. Figure 54—7 Loosely install the center rotating mount. Do not overtighten these Figure 54—10 Lay the rotating plate on the mount base. How to Assemble a Dobsonian Telescope Figure 54—8 base front. How to Assemble a Dobsonian Telescope Figure 54—11 Insert the mounting screws in the rotating plate for holding the base sides. Figure 54—12 Loosely attach these screws until all sides have been assembled to the rotating plate.

Figure 54—13 screws. Figure 54—16 Mount the rotating plate on the mount base with the center rotating mount. Figure 54—18 Gently set the telescope tube in the mount. Thread the spring mount into the pivot posts. Figure 54—19 Stretch the spring by pulling on the lanyard. Figure 54—22 The Crayford Focuser will accept either 1. Figure 54—24 Remove the 1. Figure 54—25 This telescope has incredible viewing power. A nice touch is the fine focus knob on the focuser. Figure 54—28 Inside the Dobsonian mount is a great cubbyhole for storing your dolly. How to Assemble a Dobsonian Telescope Figure 54—26 One drawback of the Dobsonian telescope is that it can be unwieldy to move.

How to Assemble a Dobsonian Telescope Figure 54—29 A mirror cooling fan is built into the base of the Zhumell Dobsonian telescope tube. Figure 55—4 Attach the motor drive to the vertical adjustment bolt. Track Stars with Clock Drive Figure 55—2 The Konus motor drive has two attachment points: the RA worm drive shaft and the vertical adjustment mounting bolt.

Figure 55—6 cover. Remove the motor drive Figure 55—7 Connect one 9V battery to the motor drive. Zhumell Aurora 70 RA Project What you need are astronomical binoculars. These all-metal, rugged, waterproof binoculars are able to accept 1. Figure 56—4 A tripod adapter is included with these Zhumell binoculars. Figure 56—5 Each ocular is gradated for precision adjustment. Each eyepiece must be individually focused. Figure 56—8 multicoated. Both lenses are Project Figure 57—2 A rubber O ring is used for ensuring a snug fit inside the finder mount.

Figure 57—5 Use a collimator for aligning the mirrors in Dobsonian and Newtonian telescopes. Finding Celestial Bodies with a Finder Figure 57—6 Add filters to your eyepieces for enhancing your observations. Figure 57—7 Size does make a difference: a 2-inch eyepiece left and a 1. Figure 57—10 Focus on a terrestrial object approximately 1, yards distant with the main telescope.

Then, center the same object in the finder scope. Finding Celestial Bodies with a Finder Figure 57—8 Most telescopes are predrilled for accepting a finder scope. Figure 57—12 Ready for prime time. Assemble a Professional-Grade Telescope Project It looks as beautiful as it works. Figure 58—4 provided. One fine-focus knob is Figure 58—5 Lock the focusing knobs in place with a hex wrench. Figure 58—8 Remove the 1. Assemble a Professional-Grade Telescope Figure 58—6 A high-quality metal lens cap protects the multicoated lens.

Figure 58—10 eyepiece. Ready for a 1. Actually, this mount is manufactured in conjunction with AOK in Switzerland. Figure 58—14 Loosely attach the tripod mount collar. Assemble a Professional-Grade Telescope Figure 58—15 Loosely thread the dovetail mount set screw into place. Figure 58—16 Loosely thread the altitude adjustment set screw into place. Figure 58—17 Loosely thread the azimuth adjustment set screw into place. Figure 58—20 Remove the tripod mount locking nut. Assemble a Professional-Grade Telescope Figure 58—18 Open the wooden tripod and wrap the retaining strap around one leg.

Assemble a Professional-Grade Telescope Figure 58—21 Carefully drop the tripod mount plate into place. Watch out for the thread grease. Figure 58—22 Reattach the tripod mount-locking nut. Figure 58—23 Tighten the locking nut. Figure 58—25 Carefully set the mount on top of the tripod mount plate. Figure 58—26 Insert the mount attachment bolt. Assemble a Professional-Grade Telescope Figure 58—24 Locate the mount attachment bolt and add a washer over the threads. Assemble a Professional-Grade Telescope Figure 58—27 Tighten the mount attachment bolt with a hex wrench.

Figure 58—28 mount collar. Figure 58—31 Prepare the Vixen-style dovetail telescope mount plate. Assemble a Professional-Grade Telescope Figure 58—29 This is where you mount the Vixen-style dovetail telescope mount plate. Figure 58—33 The Vixen-style dovetail telescope mount plate. Figure 58—34 A telescope receiving plate slides into the mount. Figure 58—37 grade eyepiece. This is a professional- Project Assemble a Professional-Grade Telescope Figure 58—35 in place.

Figure 58—43 Either a diagonal or an eyepiece can be added to this telescope. Assemble a Professional-Grade Telescope Figure 58—44 You can rotate the focuser, so the coarse focus knob is up. Figure 58—45 This mount is able to accommodate two telescopes at the same time. Figure 59—2 You can safely project an image of the sun onto a sheet of cardstock. Begin by removing the eyepiece of your telescope. Seeing Solar Sights Figure 59—3 Add a solar shade. This sheet of cardstock will block extraneous sunlight from your projection sheet and will hide the finder scope from an accidental solar view.

Figure 59—4 Return the eyepiece. How to Trail Stars Figure 59—6 Move the projection sheet until you get a sharp image of the sun. Figure 60—3 Nikon FM This is a great low-cost film SLR camera for testing the astrophotography waters. Figure 60—4 Only one little piece of modern technology is inside the FM10— a light meter battery. Figure 60—7 Find a T-Mount camera adapter. I removed one from this Vivitar mm mirror lens. How to Trail Stars Figure 60—5 Save the battery for later, when you want to return the camera to more conventional and down-to-Earth photography.

Figure 60—9 A threaded shutter release button is needed for adding a cable release. Figure 60—10 A cable release. How to Trail Stars Figure 60—11 Thread the cable release into the shutter release button. Astrophotography Figure 60—14 Make sure your cable release also has a locking screw for enabling l-o-n-g timed exposures. Figure 61—4 Add the T-Mount to the camera adapter. Figure 61—6 The Meade Vari-Cam adapter can slide forward and backward for different magnifications.

Astrophotography Figure 61—8 Add the T-Mount to the camera adapter. Figure 62—4 A lens helps focus the LED light to a bright beam. The Ideal Star Party Kit Figure 62—5 Power for the flashlight is provided by moving a magnet back and forth through a coil. Figure 62—6 Twenty seconds of shaking the flashlight can generated 20—30 minutes of usage. Figure 62—8 Vision Scope. Night Owl Optics Night Project The Ideal Star Party Kit Figure 62—9 This monocular form factor is ideal for checking your ground site for obstructions. Figure 62—10 The lens cap also functions as a daylight shield for the sensitive night-vision sensor.

Figure 63—2 Long exposures and a motor drive for your telescope are mandatory for deep-sky photography. This check is best performed during the daylight, before you begin to take your photographs. Figure 64—2 The built-in LCD screen can be used for checking your astrophotography. This electrolytic capacitor is used for firing the electronic flash and it does retain a sufficiently painful charge—even when the camera has been turned off. Figure 64—7 assembly. It is used for aborting an image-delete operation. See www.

Figure 64—13 And this screw. Figure 64—20 battery pack. Figure 64—23 Insert the clips into the two outside battery holders. Figure 64—25 Clip the external battery pack in place. Figure 64—26 Test the camera for proper operation.

Astronaut 007 - Spies In Space - NASA's Unexplained Files

Several ribbon cables and wire connectors are attached to the various components for example, the LCD has three ribbon cables and one wire connector. Make sure you disconnect these cables and connectors before you separate the two case halves. Figure 64—29 The LCD right and the lens assembly left. The required voltage must be a constant and stable 6V. Any loss in power and the camera will turn itself off. The black plastic is insulation between the circuitry and the SD card slot located on the bottom of the main circuit board.

Figure 64—31 left. An infrared IR filter is attached to the front of the sensor. Figure 64—35 Reinstall the CCD sensor circuit board. Remove this assembly. Without this feedback, the camera goes stupid and becomes a brick. So, remove the lens, but keep it attached to the camera. Figure 64—37 As you return each component, reattach its ribbon cable and wire connector. Space constraints in the Z2 mandated that the Peltier Junction be moved to the bottom of the camera. This will facilitate the cool air movement from the Peltier Junction.

Figure 64—41 All closed up, wired up, and ready for action. Figure 64—43 Another switch is used for enabling the external battery pack. Figure 64—44 Make sure all heatsensitive items such as these lens ribbon cables stay away from the Peltier Junction heat sink. To operate these switches, I have to short them with a clip during the camera startup sequence. Figure 64—47 works. Build Your Own CCD Camera Figure 64—48 The shutter release button must either be able to capture long, extended exposures or you can use the video recording mode.

Figure 64—49 If you need one, a discarded 35mm film canister makes a great 1. Figure 64—50 The video recording mode is more practical for using this CCD camera for astrophotography.

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Switch the Peltier Junction on and off in a couple of the shots and see if there is any improvement. If not, grab another discarded digital camera and try again. Shooting video eats up a lot of memory space. Videotaping the Night Sky Project Figure 65—2 Hold your digital video camera up to the eyepiece for a painless video tour of the heavens.

Videotaping the Night Sky Figure 65—3 You can check your video in the field. Cover the LCD with a piece of red cellophane during viewing. This will protect your night vision. This page intentionally left blank Chapter Eight Your First Job Is on Mars In the annals of space exploration, our path to the stars has been paved by robots. This robot was named Mariner 2. Later, in , Mariner 2 made a flyby of Venus, and it transmitted temperature and atmospheric data back to Earth. Mars robotic exploration is still a hot topic see Figure That modesty is the epitome of understatement.

Dragging that wheel, Spirit had to sprint to a slope where it could catch enough rays to continue operating during the upcoming Martian winter. That period of minimum sunshine was more than days away, but Spirit could only muster enough power for about one hour per day of driving on flat ground. And you think your earthbound evil robot competitions are tough? September , electrical power began to surge from its photovoltaic arrays. Robot life on Mars was ready to begin anew. Yes, Spirit was able to wait out the Martian winter, and slowly in Project The kit comes with two Figure 66—4 All the necessary parts are included for building two gear-drive wheels.

Figure 66—7 Complex support structures can be used for holding sensors. Figure 68—2 A nonpowered tail wheel can be added to your JoinMax robots. Figure 69—2 Just a handful of discrete analog components are needed for building your own solar power generator. The BPW33 photodiodes lower right also generate electricity when exposed to light.

Figure 70—4 The touch sensor will help to protect the delicate light sensors for a collision. Watch Out with a Sense of Touch Figure 70—2 A touch sensor can be added to any design with just a couple of mounting pins. Watch Out with a Sense of Touch Figure 70—5 Use a touch sensor to detect the swing of your tail wheel. Figure 70—6 You can integrate the control of the motors and your sensors with the easy-to-use programming environment included with the JoinMax DIY kit.

These gray sensors can be used for following a line or checking for edges and cliffs. Move Toward the Light Figure 71—3 A crude light-wave communication system can be built from the photoresistor light sensor and the LED module. Figure 71—4 Mount the two sensors, facing each other. Figure 71—5 Ensure that both sensors are extremely close to each other.

Record a Martian Scream Figure 71—6 Mount this communication assembly on the underside of your robot. Record a Martian Scream Figure 72—2 robot. Mount the sensor on your Figure 72—3 Route the connection wire from the voice sensor to one of the analog ports on the Super RCU. The connectors have been removed for clarity.. Figure 74—2 Exotic sensor combinations like this light-wave communication system see Project 71 can be added to your rover robot. Track Your Movements Project RoboEXP Educational Kit Figure 75—1 These twin gray sensors can be used for detecting and following lines as the robot drives around.

This connection enables twoway communication with either your computer or another Super RCU. Figure 78—2 A special Sensors Monitor program enables you to directly monitor all sensor readings from your robot on your PC. Figure 79—2 Try various gear combinations to get the ideal robot performance. Program your robot with built-in timer intervals, tone beeper, and sensor contact points.

Use these contact points as waypoints for your mission timeline. When the robot reaches one of these waypoints, have it emit a tone. Follow along with the robot to see if it can keep a schedule. If you have trouble convincing NASA about the merits of sending your robot design to Mars, transform your backyard into a Martian playground. A derelict sandbox makes a great site for creating your own tiny slice of Mars. Just add some rocks and turn your robot loose in this new sandy environment. Program your sensors touch and light to avoid obstacles and keep your rover safe.

Program Rover to Navigate Mars Project RoboEXP Educational Kit During your Martian mission, set up a log book for recording waypoints, obstacles, program glitches, and rover video transmissions. And none could be stranger than the building and launching of a manmade satellite constructed from a discarded Russian spacesuit. The plan called for SuitSat to circle the Earth and relay its status to ground stations monitoring its telemetry.

Drawing courtesy of NASA. Now if only an evil genius had a space station, what sorts of strange experiments could be performed? Figure 86—7 Even a small dwelling will require a lot of tubing and connectors. How to Build a Geodesic Dome Figure 86—8 If you can't design a suitable dome, try a more conventional dwelling shape. Commonly called solar panels, these semiconductors are able to expel electricity when exposed to light.

So, add a couple of these panels to your dome and live off the grid. Aquatic plants can be helpful in meeting this requirement. This balanced ecosystem will also provide you with a source of protein. Yum, I can almost smell the boiled crawfish. Prepare your water distillation system by digging a small hole in the ground. Drop a cup into this hole for gathering your water and stretch some plastic wrap over this hole in the ground.

Carefully drop a small weight onto the plastic, so it hangs over the cup. Now, sit back and catch some rays—solar rays, that is. As the sun heats the hole, water should condense on the plastic and drip into the cup. Learn How to Distill Water Project Control Your Climate Project This small 30mm ceramic square the white square in the center just needs a heat sink and a power source a 9V battery to begin cooling.

Figure 92—2 You can find great cooling systems inside older PC computers, too. This fan assembly was removed from an Intel Pentium 4 microprocessor. Finding a clean, energy-efficient method for removing waste from your dome will be one of your most expensive challenges. There is no need for either plumbing or power with these types of toilets. An HRM is a wristwatch-like device that can measure your heart rate and track your exercise heart-rate limits throughout your entire daily exercise program.

Models like S are optimized for a specific type of exercise—biking. While the S excels at tracking your cycling regimen, it can also be used for tracking your daily health, wellness, and fitness. Keep Tabs on Your Mission Project Put Waste in its Place Project Figure 94—3 wrist. Just strap it on your Figure 94—4 Your body connection is also a wireless transmitter that monitors your heart rate during rest and while exercising.

Space Endurance Record cumulative days in space —www. Lucid days —www. This should be a simple question to answer: Where is the oldest planetarium located? Thought to be the first professional planetarium projector, there is even more interest in the structure that housed this device. Bauersfeld settled on a dome design. And, therein, comes another interesting wrinkle in history. This structure was a dome fabricated from a wire mesh covered with a thin layer of concrete. Patent 2,,, patented December 7, Anyway, back to the Carl Zeiss planetarium.

About one year later, in the summer of , Bauersfeld unveiled his night sky projection system to the public. The reviews were strongly supportive and the Carl Zeiss optical factory suddenly found itself in the planetarium projector business. Orders were welcome in depression-era Germany and 25 Zeiss projectors were built and shipped around the world prior to the start of the Second World War. One of these Zeiss projectors found its way to the U. Now you can have the wonders of the night sky inside your own home.

During its seven-day mission, Zond 8 conducted circumlunar space investigations, as well as transmitting images of both Earth and the Moon. Zond 8 returned to Earth on October 27, , with a recovery in the Indian Ocean. Figure 96—2 My Room. Use red LEDs, along with some current limiting resistors, for marking each Apollo lunar base point. Plan a Trip to the Moon, Alice Figure 96—3 Functioning as an astronomical night light, Moon in My Room is also an accurate representation of the lunar surface.

Just refer to some of the projects in Chapter 7 for inspiration and guidance. How to Show the Phases of the Moon Figure 97—3 Four batteries and a special mount for hanging your moon on your wall. Figure 97—4 An internal circuit board supports the IR receiver and photoresistor. Carefully, lay a sheet of foil over the Star Theater 2 projector. Now, prick a small hole in the foil where ever a star appears on the projector. Build a Home Planetarium Figure 97—6 A series of innovative illuminated elliptical wedges give this moon its phases.

Figure 99—2 You can remove the Star Theater 2 meteor maker for projecting actual meteor photographs inside your own home planetarium. The glow from previously charged illuminated phosphorescent stars can help you visualize the sky above you. Take Your Planetarium Outdoors Project Based on all the available evidence remaining in the Department reported over the last 30 years , the information studied, either separately or corporately contained in UAP reports, leads to the conclusion that it does not have any significant Defence Intelligence value.

However, the Study has uncovered a number of technological issues that may be of potential defence interest. Causes of UAP Reports.



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