Please make sure that you are posting in the form of a question. Please enter a question. Packed with authentic details, it features 3 removable rocket stages, including the S-IVB third stage with the lunar lander and lunar orbiter. The set also includes 3 stands to display the model horizontally, 3 new-for-June astronaut microfigures for role-play recreations of the Moon landings, plus a booklet about the manned Apollo missions and the fan designers of this educational and inspirational LEGO Ideas set. View larger.
It arrived at Bennu in and will return a sample to Earth in Frequently bought together. Introduces angular velocity, angular acceleration, rotational inertia, and torque, and shows how concepts are used to design mechanism to impart proper rate of spin. Add to Cart. See and discover other items: lego setsBest lego sets for adultBest building sets for adultsBest lego sets for adultsBest rockets for adults. This Model is rated: Moderately Challenging 1. Activity: Individual research and reporting.
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Black Holes Suck Socks. Timeline of spaceflight. Lunar Atmosphere and Dust Environment Explorer. Tracking and Data Relay Satellite. Apollo 11 Landing Site. If you have an account, sign in with your email address. Spaceflight Now. Launch Missionw July 2, The Orbiting Carbon Observatory 2, or OCO-2, is an Earth satellite mission designed to study the sources and sinks of carbon dioxide globally and provide scientists with a better idea of how carbon is contributing to climate change. Launch Date: July 15, Program used to practice space rendezvous and EVAs. Your Email.
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The Pods are Coming! Find out how a "web" of tiny sensors can measure conditions over a large area all at one time. Disciplines: Engineering, environment especially carbon cycle , science experiment design.
Activity: Entire class, indoor or outdoor, game-type demonstration Put Your Own Spin on Technology Understand how technologies developed for space can be used to create beneficial new products and materials for everyday life.
Disciplines: Design, engineering, technology and society Activity: Individual or teams, indoor, hands-on Design and Build Your Own Spacecraft Use found objects and materials to design and build a model spacecraft. Disciplines: Design, engineering, art Activity: Individual or teams, indoor, hands-on Enose is Enose is Enose How scientists and engineers study biological systems to develop artificial systems, in this case artificial olfaction.
Disciplines: Biology, chemistry, electronics, teamwork Activity: Entire class, indoor, hands-on Getting in Touch with Your Inner Spacecraft How can we explore "space weather" using multiple spacecraft? How do scientists and engineers know that their spacecraft and instruments will withstand the harsh environment of space? Disciplines: Chemistry, physics, scientific method, language arts Activity: Individual or small group, hands-on, indoor.
Adaptable to grades Be Glad You're Not a Cyclops! What is stereoscopic vision and why do we need it? Disciplines: Biology, math Activity: Pairs in turn within large group , hands-on experiment, indoor De-twinkling the Stars How do astronomers remove the distortion in starlight caused by Earth's atmosphere?
Navy's Blue Angels and multiple autonomous formation-flying spacecraft. Disciplines: Math, Earth science Activity: Groups , kinesthetic, outdoor Making the Parts Fit Together How do engineers design a machine so that all its functions work together smoothly?
Disciplines: Design, analytical reasoning, visual arts Activity: Small groups , hands-on, indoor. Adaptable to grades K Watching the Waves How can wave behavior help us find planets around distant stars? Disciplines: Physics, Earth science, astronomy Activity: Small groups , hands on, indoor Getting a Feel for Gravity How do space mission planners use gravity to help their spacecraft reach their destinations?
Disciplines : Physics, Earth science Activity: Small and large groups, kinesthetic, outdoor Design a Spacecraft on a Chip How do engineers keep making spacecraft smaller and smaller, yet more and more capable?
Disciplines : Design, creative thinking, visual arts Activity: Groups , design, draw, build model. Ion Drive Your Way through Space How can ions be used to accelerate spacecraft on long missions to explore the solar system? Disciplines: Physics, engineering design Activity: Groups , kinesthetic, indoor or outdoor You've Got Algo-rhythm!
How do space scientists program a computer to be smart enough to make up its own mind? Disciplines: Math, language arts, visual arts Activity: Small groups , kinesthetic, hands-on, indoor article last updated September 26, Teachers! Check out these fun and unusual classroom activities! The classroom activity articles described and linked to this page were developed by The Space Place staff. We are now making them available in Adobe Acrobat.
Adobe Reader is available free for downloading from the Adobe web site. Most of the activities can be adapted for grades Some may also be of interest to grades Activities for the Classroom. Activities for the Classroom Make a Pinhole Camera In this rather intense hands-on activity, students make their own pinhole cameras from a pattern given in the activity article. They cut the pieces from a cardboard cereal box.
All materials are easily available, except perhaps for the film canisters, which should obtainable with a small effort.
Students will learn the principles of photography and enjoy a level of creativity not found with digital photography. Disciplines: Physics optics , engineering design, astronomy Activity: Hands-on project, working individually or in small groups of two or three.
Evil-doer or Do-gooder: Getting the Goods on Ozone Explains the different roles ozone plays in Earth's atmosphere depending on its altitude. At some altitudes, it works to benefit living things, and at other altitudes it is harmful. Introduces the concept of spectroscopy and how a NASA instrument can measure ozone at different altitudes.
Students are invited to build a spectroscope themselves, from poster board, construction paper, and using a CD or DVD as the diffraction grating. Disciplines: Earth science, physics optics , chemistry, engineering design.
Activity: Discussion and hands-on project. Can be done in small groups or indiviually. Designing for the Barely Imaginable How do space scientists and engineers know what kinds of science instruments cameras, spectrometers, etc.
How do they decide what they will want to measure once they get to, say, Saturn's moon Titan or Jupiter's moon Europa? This article explains these planetary science instruments as extensions of our five senses, with each type of instrument analogous to eyes, ears, noses, etc.
The activity invites students to imagine and describe an alien world, then design a pretend mission to explore that world, and give the results!
Disciplines: Engineering design, physics, Earth science, language arts Activity: Discussion, design, and cooperation in small groups The Abracadabra of Engineering: Strong Structures from Flimsy Materials Introduces the concept of solar sailing. Presents the problem of how to design a solar sail the size of a football field that can still be launched and deployed in space.
Students build a strong, simple truss model using nothing but plain paper and string. This design is the basis of a real mast design to support solar sails.
Students then test the strength of their model. The article explains how this lightweight structure of flimsy materials can be so strong. Disciplines: Engineering design, physics Activity: Model building in small groups Designing Nature's Way Describes the process of artificial evolution in which a supercomputer or many microcomputers networked together "evolve" and test millions of generations of designs to finally come up with the best one possible to meet a given set of requirements.
In this case, artificial evolution was used to create a perfect, tiny antenna for some tiny satellites. A Includes a clever game students can play to "evolve" the best computer "emoticon" face to express a given emotion. Illustrates the concepts of both natural and artificial evolution. Disciplines: Biology, engineering design, logic Activity: Group exercise and discussion. Pluto or Bust!
Describes the New Horizons mission to Pluto-Charon and the extreme challenges presented to the scientists and engineers designing the mission. Read about the very strange Pluto-Charon system, and use the questions at the end for class discussion or as a writing assignment. Disciplines: Logic, engineering design, astronomy Activity: Individual or group exercise and discussion. Teaching Machines to Think Fuzzy Explains in a clear and entertaining way the difference--or at least one of them--between how humans think and how machines think.
Humans understand complex problems with seemingly unquantifiable parameters, then manipulate the input parameters to come up with a probable solution. If that doesn't work, they take the less-than-perfect result as a new input and tweak the answer some more until satisfied with the result. This article and activity show how you could teach a computer--or a robot--to solve problems that way.
Disciplines: Math, logic, physics force, motion Activity: Individual or group exercise and discussion. Dampen That Drift! In very simple terms, this activity introduces vectors, and their addition and subtraction, without need for geometry, algebra, or trigonometry. To shed light on some of the greatest mysteries of the universe, space scientists and engineers are working to perfect a technology called space interferometry.
Several spacecraft carrying telescopes or other types of instruments are flown in formation. They work together as if part of one giant, rigid instrument. This activity article explains a system for eliminating almost all the tiny disturbances in this virtual structure caused by random forces in space.
Disciplines: Math introduces vectors , physics force, motion Activity: Group activity game and discussion. Reinventing Time Summarizes the history of timekeeping technology and secondary inventions people used to reconcile our mechanical timekeeping with our master timekeeper, the Sun. Explains the analemma curve and how to use it to calculate the exact time of high noon in any location. Disciplines: Earth's coordinate system, astronomy, technology and society, math Activity: Group activity and discussion.
Team Up on the Weather Explains how weather satellites, teamed with scientists, pilots, computers programmers, and super computers work together to save lives and property by predicting where large storms will hit and giving people time to get out of the way. Includes a fun weather trivia game with lots of background information. Disciplines: Earth science Activity: Group activity and discussion. Singin' the Black and Blues Gives simple, yet authoritative answers to the questions "Why is the sky blue?
Activity: Reading and discussion, singing if desired , writing poem or essay. Listening for Rings from Space This activity introduces gravitational waves and the NASA technology being developed to detect them in space.
The activity involves building a metaphorical interferometer that demonstrates how the mission and all interferometry works. Disciplines: Physics light, lasers, interferometry , math proportion Activity: Small group hands-on activity and class discussion. Rising Above the Problem Explains how remote imaging of Earth by satellite instrumentation can be used for everything from managing forest fires to deciding where to build a shopping center.
Students think about how very high-resolution images of Earth from space might be used, and about the political and economic aspects of studies using this type of data. Disciplines: Earth science and technology, technology and society Activity: Group activity, discussion. Sizing Up the Clouds The teacher sets up three simulated "clouds" representing three different cloud types. Students use different methods to estimate "precipitation" contents of each cloud type.
Each method is roughly analogous to methods actually used in weather forecasting. Finally, the "precipitation" from each cloud will be released, and the students will compare their estimates to what is actually experienced on the "ground. Solve the Mystery of the Gases! Explains how laser light is different from ordinary light and how lasers have found uses in everything from CD players to delicate surgeries. Introduces emission and absorption spectroscopy.
Students are invited to play some gas identification games that help them understand how spectrometers work, using both ordinary light and lasers. Discussion questions help the teacher engage the students and evaluate the effectiveness of the activity. Disciplines: Physics, chemistry, technology applications.
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Please make sure that you are posting in the form of a question. Please enter a question. Packed with authentic details, it features 3 removable rocket stages, including the S-IVB third stage with the lunar lander and lunar orbiter. The set also includes 3 stands to display the model horizontally, 3 new-for-June astronaut microfigures for role-play recreations of the Moon landings, plus a booklet about the manned Apollo missions and the fan designers of this educational and inspirational LEGO Ideas set.
View larger. Packed with authentic details, it features 3 removable rocket stages first, s-ii second, and s-ivb third a launch escape system, a command and service module along with the Lunar Lander and Lunar Orbiter to recreate a rocket launch and splashdown landing. There are also 2 new-for-june Astronaut minifigures and 1 microfigure for role-play recreations of the Moon landings.
This building toy includes an informational booklet about the manned Apollo missions and the fan designers who created this educational LEGO Ideas set. Builders have the option to horizontally display the Saturn V model with the 3 stands.
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Post your question. From the manufacturer View larger. The Apollo spacecraft features the lunar lander and the lunar orbiter. Great for display and role-playing the manned Apollo Moon missions.
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Lego Ninjago. Is this feature helpful? Thank you for your feedback. Share your thoughts with other customers. Write a customer review. Customer images. See all customer images. Read reviews that mention put together fun to build took several hours putting it together great set command module every penny worth every attention to detail highly recommend best lego set old son lunar lander set ever apollo program lunar module frustration free really enjoyed come apart space program.
Top Reviews Most recent Top Reviews. There was a problem filtering reviews right now. First Lego kit I've done since I was a kid. This set was fun to put together with my daughter and is a great, accurate model as well. Jeremy Herbert Top Contributor: Batman. Michael Top Contributor: Baby.
This is such an awesome set. It's my favorite realistic space set and I thought nothing would beat the space shuttle.
In my case, it's the perfect father and son build. It has some creative building and a lot of great little details. It has a high piece count for the price. And it's a crazy moon rocket! What can possibly compete? I got the frustration-free packaging and was worried that it wouldn't come with the normal Lego box. That concerned me because I wanted the full experience for this set.
Thankfully, the frustration free box is a box just big enough to hold the whole set including the regular box. It's shipped in this frustration-free box which is good and bad. It's good because it protects the set without the need of a huge box and padding. It's bad because while it doesn't say what set is inside, it does say "Lego" and "Toys" all over the box.
It was ok, but my children really wondered what was in the box which reduced the surprise. But I don't care how it came--the set is mine! I strongly suggest this model. Lego has said they will keep making more through , so you should be able to buy it without paying scalper prices.
But I suggest you keep watching Amazon and other retailers and buy one for yourself! One of the best Legos ever made.