Commercial Law Resources

Commercial Law Resources

The following resources relevant to the Commercial Law Practice Group are available on this site.
Note: the information below is updated annually, and users of this web page will need to verify the accuracy of the citations and the information contained in the web links:

1. Statutes
A. Commercial

Commercial Space Competitiveness Act:
Definitions — 51 U.S.C. § 50501
Anchor Tenancy and Termination Liability — 51 U.S.C. § 50503
Title 51 Chapter 509, formerly the Commercial Space Launch Act of 1984– Commercial Space Act of 1998, Title II — P.L. 105-303
Commercial Use of Government Facilities –15 U.S.C. § 5807
Cross-Waiver/Indemnification Authority (user of space vehicle) — 42 U.S.C.§ 2458b
Cross-Waiver/Indemnification Authority (developer of experimental aerospace vehicle) — 42 U.S.C. § 2458c
Launch Voucher Demonstration Program — 15 U.S.C. § 5803
Shuttle Pricing Policy — 42 U.S.C. § 2466
Space Shuttle Use Policy — 51 U.S.C. § 70102

B. Miscellaneous

Acquisition of Space Science Data — 51 U.S.C. § 50113
Charges for Use of Government Services — 31 U.S.C.§ 9701
Disclosure of Confidential Information — 18 U.S.C. § 1905
Joint Development of NASA Wind Tunnels – 50 U.S.C. Chapter 20
Landsat — 51 U.S.C. § § 60111-113
Special Maritime & Territorial Jurisdiction of US — 18 U.S.C. § 7
Sources of Earth Science Data — 51 USC § 50115
Stevenson Wydler Act — 15 U.S.C. § 3701 et seq. V2

2. Presidential Directives

Convergence of U.S. Polar-Orbiting Operational Environmental Satellite Systems (PDDNSTC-2)
Landsat Remote Sensing Strategy
U.S. National Space Policy (NSPD-49)(PDF)
U.S. Space Transportation Policy (NSPD-40)(PDF)
National Space Policy of the United States (June 28, 2010)(PDF)

3. Relevant Regulations

Cross-Waiver of Liability — 14 CFR Part 1266 (PDF)
Cooperative Agreements with Commercial Firms — 14 CFR Part 1274 (PDF)
Duty-Free Entry of Space Articles — 14 CFR Part 1217 (PDF)
Space Flight — 14 CFR Part 1214 (PDF)

4. Relevant NASA Policies and Management Instructions

Authority to Enter into Space Act Agreements (NPD 1050)

5. Relevant NASA Web Sites

NASA Export Control Program (ECP)
Office of International and Interagency Relations (OIIR)

6. Relevant Federal and Other Web Sites

FAA Office of Commercial Space Transportation
Department of Commerce Bureau of Industry and Security (BIS) Export Enforcement
Department of Justice Office of Information Policy (OIP) FOIA

Powered by WPeMatico

Get The Details…
Mia N. Concilus

SCaN STEM Navigation Activities

SCaN STEM Navigation Activities

Navigate Space: Space Communications and Navigation Workbook

Grades 8 – 12 

NASA navigates throughout the solar system and beyond, revealing the mysteries of the universe. In this workbook, you’ll use basic mathematics concepts to explore space navigation. We’ll use simplified, real-world examples supplied by navigation engineers to delve deep into the exciting world of space exploration. As NASA goes forward to the Moon and journeys on to Mars, maybe you could be the one to plan our next big mission!

Image of a space station with a starry background. The text reads "Navigate Space: Space Communications and Navigation (SCaN) Workbook)"
Navigate Space Workbook

Workbook Answers

NASA’s Search and Rescue Coloring Book 

Grades K – 3

Satellite-aided search and rescue is a collaborative effort involving a number of national and international organizations. The international Cospas-Sarsat Programme was founded in 1979 to provide timely, accurate and reliable location data to first responders. The U.S. serves on the Cospas-Sarsat Council and a number of U.S. agencies are instrumental in ensuring the robustness of the search and rescue network. NASA lends its expertise in technology development through their Search and Rescue (SAR) office. NASA’s SAR office is based out of NASA’s Goddard Space Flight Center in Greenbelt, Maryland, and is a project of their Exploration and Space Communications projects division. Programmatic oversight is provided by NASA’s Space Communications and Navigation program office at NASA Headquarters in Washington, DC.

Illustration o the Earth with two satellites orbiting above. The text reads
Search and Rescue Coloring Book

Powered by WPeMatico

Get The Details…
Catherine G. Manning

Eleasa Kim: Supporting NASA’s Commercial Low-Earth Orbit Development Program

Eleasa Kim: Supporting NASA’s Commercial Low-Earth Orbit Development Program

4 min read

Eleasa Kim: Supporting NASA’s Commercial Low-Earth Orbit Development Program

Eleasa Kim is a payload project integrator in Marshalls Human Exploration Development and Operations Division.
Eleasa Kim is a payload project integrator in Marshall’s Human Exploration Development and Operations Division.
Credits: NASA/MIck Speer

For Eleasa Kim, being part of NASA’s Commercial Low-Earth Orbit Development Program, also known as CLDP, is the perfect combination of working with technology and helping people.

As the payload project integrator for CLDP supporting NASA Marshall Space Flight Center’s Human Exploration Development and Operations Division, Kim supports NASA and commercial entities that want to be part of the agency’s burgeoning commercial low Earth orbit economy.

As NASA works to transition science operations from the International Space Station to commercial space stations, Kim is working to ensure a smooth transition for the science being conducted in microgravity for the benefit of humanity.

“What inspires me every day is being trusted by CLDP and Marshall to represent payloads operations in these critical stages of commercial space station development,” Kim said. “I get a front row seat as I offer my expertise and passion to help further this mission in making the spaceflight team operating in low Earth orbit even bigger and more sustainable with commercial partnerships.”

Kim’s path to NASA began with an aptitude test taken at her high school in Opelika, Alabama, that revealed she would do well working in public service. She also enjoyed anatomy and biology classes and had an interest in technology. During her sophomore year, a teacher suggested she would make a great engineer. Stem cell research was beginning to make headlines, and she decided to pursue her bachelor’s degree in biomedical engineering at Vanderbilt University.

She also earned a master’s degree in biotech research from Northwestern University. When evaluating the next step in her journey, she evaluated Ph. D. programs and industry jobs.

“I love people, technology, and teams – working on a team and having a shared goal,” Kim said. “And I like results.”

In 2007, Kim landed a job on a NASA contract at Johnson Space Center, working for Wyle Laboratories as a biomedical engineer flight controller in Mission Control supporting the hardware for astronauts in space.

“Until then, NASA had not been on my radar at all, but I thought, ‘Wow, that’s a cool opportunity,’ and it aligned with those things that are most fulfilling to me,” she said.

Kim supported the operations for crew health and medical equipment on the space station. This included medications, exercise hardware, and environmental sampling equipment. For Space Shuttle mission STS-119 and Increments 27 and 28, she managed the full mission complement of activities and hardware resupply and return. She also trained new biomedical engineer flight controllers.

“It was very hard, but I love challenges and working hard,” Kim said. “And I like working on a team. And that’s exactly what it was. It had the hardware side of things – the building and fixing of things, because the space station was being assembled and hardware rarely works exactly how you think it will in microgravity. And it also had the human aspect of supporting crew health.”

Kim joined the Marshall team in 2014 and has worked as a science payload planner for station and worked a short time on the safety team supporting payloads for the Artemis I mission. She also did systems integration for the Microgravity and Life Science Glovebox teams. After working on various support contracts for about 15 years, she was hired by NASA as a civil servant in 2020. During the first few years as a civil servant, Kim provided technical leadership for the mission planning branch of the Payload and Mission Operations Division at Marshall. While in this role, one of the part-time tasks she fulfilled was providing subject matter expert support for CLDP. In spring of this year, that part-time role became a full-time position.

Kim said she is looking forward to seeing the commercial low Earth orbit economy develop in the years to come. NASA is working with commercial teams to develop commercial space stations and the services that will be needed to support them. 

“When the space station retires, the plan is for us to continue to fly and get our astronauts experience in microgravity and low-Earth orbit as well as execute science in microgravity and low-Earth orbit,” she said. “We want to be one of many users of commercial space stations.

“What I’m most excited for now is that NASA is leveling up by supporting the creation of commercial space stations and destinations. I have a lot of passion for our mission – me in this role is where I’m meant to be right now.”

Share

Details

Last Updated

Sep 28, 2023

Related Terms

Powered by WPeMatico

Get The Details…
Beth Ridgeway

Marshall Teams Combine to Make Space Station Science Reality

Marshall Teams Combine to Make Space Station Science Reality

5 min read

Marshall Teams Combine to Make Space Station Science Reality

By Gina Hannah and Jonathan Deal

For more than 20 years, astronauts aboard the International Space Station have worked diligently on science experiments that benefit humanity on Earth and in deep space. Getting these experiments to and from space is a multi-faceted effort across the agency. Teams at NASA’s Marshall Space Flight Center have combined their world class capabilities – before and after these experiments return from the space station – to make that cutting-edge science a reality.

One experiment that recently returned from station is a perfect example of how the teams work together. The experiment titled “Growth of Ternary Compound Semiconductors” seeks to study crystal growth in microgravity, specifically focusing on ZnSe (zinc selenide) compounds and one of their potential applications in high-powered lasers operating in the infrared wavelengths.

Chris Honea, a NASA Marshall Space Flight Center technician supporting payloads, unwraps a payload Aug. 18 for semiconductor research that recently arrived from the International Space Station. The experiment studied crystal growth in microgravity.
Chris Honea, a NASA Marshall Space Flight Center technician supporting payloads, unwraps a payload Aug. 18 for semiconductor research that recently arrived from the International Space Station. The experiment studied crystal growth in microgravity.
NASA

Six SCAs (Sample Cartridge Assemblies) launched to the space station as part of the SpaceX Commercial Resupply Service Mission-24. Using the Materials Science Laboratory on station, it aimed to cultivate crystals of zinc selenide, zinc selenide telluride, and chromium-doped zinc selenide using the physical vapor transport method. But what set this experiment apart was its core objective: to discern how gravity-driven fluid flows influenced the structural, electrical, and optical characteristics of these crystals when compared to their counterparts grown on Earth.

As the crystals began to form, scientists, personnel from space station project office, and the thermal team of Marshall’s Test Lab, monitored their progress. In the unique environment of microgravity, fluid dynamics took on a new dimension, and the crystals flourished under those conditions.

“Without gravity, we have better control because weight itself can cause defects and affect the growth pattern,” said Dr. Ching Hua Su, the experiment’s principal investigator. “Our main goal is to study the effect of gravity on vapor transport crystal growth. When dealing with materials that melt at higher temperatures, vapor growth lowers the temperature and contributes fewer defects. That’s why we chose zinc selenide for our applications.”

Su is a member of the Materials Science and Metallurgy Branch in Marshall’s Materials and Processing Lab. That team also works on the engineering projects ranging from additive manufacturing, welding to metallurgy for fuel tanks and engines.

On Earth, quality ZnSe-based crystals are used in various optical applications, with implications for cutting edge-technologies such as optical windows, infrared lasers, and optical wavelength conversion devices. Being able to conduct the experiment in a microgravity environment, scientists have gained insights that could enhance the quality of these crystals, thus paving the way for revolutionary advances in optical technology.

“We are now on the brink of completing our sixth flight experiment,” Su said.

We are eager to compare our space-grown samples with those from the ground, conducting two more runs on this duplicate furnace in the test lab at Marshall to facilitate direct comparisons.Take time to debrief after success or conflict. Listen, then restate messages to make sure they’re understood.

 Dr. Ching Hua Su

Dr. Ching Hua Su

Materials Science and Metallurgy Branch in Marshall’s Materials and Processing Lab

Ensuring the science conducted on the payload is successful is a team effort, and work on the mission begins years before the payload launches.

“We have a payload operation integration specialist and a payload activity requirement coordinator who work with the payload developer to write procedures and document timing constraints,” said Jennifer McMillian, payload operations manager for the International Space Station Increment 69 management team.

Those procedures include determining the length of the experiment, proper installation of the cartridge, and defining the type of ground support needed. Planners then work those activities into the mission timeline so the payload can be scheduled into the workflow on the Materials Science Research Rack after it arrives on the space station.

Scheduling the work takes into consideration both crew time and station resources, including power, water, and the vacuum exhaust system.

“We’re involved in all of the planning. We have the whole increment team that is working on building a plan, say, six months out, and then refining that plan daily as we get closer to execution,” McMillian said.

Once the payload enters the rack, the team’s work is round-the-clock.

“When we get to real-time execution, the payload rack officers here are responsible for commanding to the rack, applying all of the resources to that rack to enable the science,” she said.

The astronauts will use the instructions written by the payload operations integration specialist to process the run, usually for about a week. The process is repeated for each of the samples in the payload before being returned to Earth.

The work is an international effort. As payloads are being processed, a team at Marshall monitors the rack, and a European Space Agency team in Munich, Germany, adjusts parameters for each specific investigation in the rack, McMillian said.

“When we’re in the middle of execution, we’re in the monitoring phase, and react to any anomalous situation we may see,” she said.

With the crystals now back on Earth, Su and his team are hoping the experiment will lead to new frontiers in crystal growth and the endless possibilities it holds for both space and terrestrial applications.

Hannah, a Media Fusion employee, supports Marshall’s Office of Communications and Strategic Analysis, and Deal, a public affairs officer, supports the Marshall Office of Communications.

Share

Details

Last Updated

Sep 28, 2023

Related Terms

Powered by WPeMatico

Get The Details…
Beth Ridgeway

Marshall Bids Farewell to Former Center Director with Retirement Ceremony

Marshall Bids Farewell to Former Center Director with Retirement Ceremony

4 Min Read

Marshall Bids Farewell to Former Center Director with Retirement Ceremony

Former Center Director Jody Singer, left, hugs Acting Center Director Joseph Pelfrey after being presented with a plaque honoring her 38 years with NASA and Marshall.

Former Center Director Jody Singer, left, hugs Acting Center Director Joseph Pelfrey after being presented with a plaque honoring her 38 years with NASA and Marshall. The plaque was made with wood from Building 4200, which Singer decided to have demolished during her tenure, and flags that flew on the last Challenger mission and Artemis I.

Credits:
NASA/Charles Beason

By Jessica Barnett

Hundreds filled Activities Building 4316 on Sept. 21 to offer their best wishes to former NASA Marshall Space Flight Center Director Jody Singer as she takes on her next big adventure: retirement.

Marshall team members brought gifts, recorded messages, and lined up for a hug or handshake with Singer as part of the celebration. A select few were invited to stand on stage and speak about Singer’s many career accomplishments, as well as how deeply she would be missed.

We have SLS (Space Launch System) in part because of the hard work of Jody, and that’s pretty amazing.

Bob Cabana

Bob Cabana

NASA Associate Administrator

“All that she did led up to her being the deputy director at Marshall, and from there, an amazing five-year tenure as the director.” added Cabana.

Singer joined NASA in 1985 as an engineer and then supported the Space Shuttle program in 1986. In all, she was involved in 110 shuttle missions. She was named the first female project manager for the Reusable Solid Rocket Booster Project in 2002 and was holding three deputy positions simultaneously just eight years later.

Eight years after that, in 2018, she became Marshall’s first female center director, overseeing 7,000 employees, a $5 billion budget, and one of NASA’s largest field installations. Singer retired July 29.

Joseph Pelfrey, who took over as Marshall’s acting center director, said he’s learned just how heavy a load Singer carried in his few weeks in the role.

“It can’t be overstated the impact that Jody had on our center, on our agency, and especially me, personally,” Pelfrey said. “To believe in me, to believe in the people that followed you – it’s your way of paying it forward, as you always said, and it can’t be overstated how much we appreciate that.”

Singer received numerous awards during her 38-year career with NASA, and the recognition continued at her retirement ceremony. Cabana joined NASA Deputy Associate Administrator Casey Swails in presenting Singer with the Distinguished Service Medal, NASA’s highest honor, along with pins from 68 International Space Station missions, plus an Alabama flag and U.S. flag that flew on the Orion spacecraft for Exploration Flight Test-1 and Artemis I.

Singer, far left, stands next to a portrait of herself after its unveiling at her retirement ceremony Sept. 21.
Singer, far left, stands next to a portrait of herself after its unveiling at her retirement ceremony Sept. 21. Joining behind her, from left, are Pelfrey, Marshall Associate Director Rae Ann Meyer, and Marshall Associate Director, Technical, Larry Leopard.
Credits: NASA/Charles Beason

Pelfrey, along with Marshall Associate Director, Technical, Larry Leopard, who emceed the ceremony, presented Singer with a plaque honoring her time at Marshall. The plaque was made with wood from Building 4200, which Singer decided to have demolished during her tenure, and flags that flew on the last Challenger mission and Artemis I.

“Jody has inspired countless young people, especially young women, to pursue careers in STEM, and she has personally dedicated her career to mentoring the next generation of explorers and leaders,” Leopard said. “I can personally say she left Marshall better than she found it.”

‘Who we are’

When it was her turn at the microphone, Singer offered thanks to the long list of team members-turned-friends she has worked with and received support from over the years.

“It makes a big difference, having folks you can call up and rely on,” she said. “You can’t do it by yourself. It has to be a team, and I couldn’t have had better partners in this journey.”

She said despite multiple reassurances that she would know when the time was right to retire, the decision was far from easy.

Singer, center right, poses for a selfie with her former coworkers Sept. 21 during her retirement ceremony. Joining her, from left, are Pelfrey, NASA Deputy Associate Administrator Casey Swails, and NASA Associate Administrator Bob Cabana.
Singer, center right, poses for a selfie with her former coworkers Sept. 21 during her retirement ceremony. Joining her, from left, are Pelfrey, NASA Deputy Associate Administrator Casey Swails, and NASA Associate Administrator Bob Cabana.
NASA/Charles Beason

I’m not a quitter, and I love what we do. I love the passion for our mission, I love all the folks, and it’s really, really hard to decide when it is time.

Jody Singer

Jody Singer

Former Marshall Space Flight Center Director

“But then I look around and I see the teams, I see the leadership we have, and when you see such talent and passion, and knowing there are people that could do it a lot better than I ever thought about doing it, that’s when I know it’s time,” said Singer.

Singer said she’s looking forward to seeing what Marshall accomplishes under the next director’s leadership, and she offered this bit of advice to team members:

“Don’t forget who we are at Marshall. Where else can you say you’re a center that launches, you land, you live in space, you help people learn, you have science, leading-edge technology and manufacturing? There is nothing wrong with being proud of the expertise that Marshall brings to the game. It just doesn’t get any better.”

Meanwhile, she added, “I’ll always be counting on you, fighting for you, and most of all, being so proud to be part of a team like this.”

Barnett, a Media Fusion employee, supports the Marshall Office of Communications.

About the Author

Beth Ridgeway

Beth Ridgeway

Share

Details

Last Updated

Sep 28, 2023

Related Terms

Powered by WPeMatico

Get The Details…
Beth Ridgeway