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A disabled woman fell on the bus I'm on and I'm literally the only one who listened to her and didn't try and pull her up when she said she wanted to sit for a second, or crowd her saying what she should do next.
Can we actually listen to disabled people maybe? This is exhausting.
Smugfolk: (getting off the ferry) "How are you, this morning?"
Ferry terminal agent: "Cold. Wet."
Smugfolk: (who has already stopped listening) "What?"
Soaring over traffic in an air taxi, receiving packages faster, and participating in a sustainable, safer mode of transportation: all could be possible with a revolutionary new type of air transportation system in development called Advanced Air Mobility (AAM).
AAM could include new aircraft developed by industry, called electric vertical takeoff and landing vehicles, or eVTOLs, for use in passenger, package, or cargo delivery. It may also include new places for these aircraft to take off and land called vertiports.
Our work in Advanced Air Mobility will transform the way people and goods will move through the skies. This includes using Advanced Air Mobility for public good missions such as disaster, medical, and wildfire response.
Our vision for Advanced Air Mobility is to map out a safe, accessible, and affordable new air transportation system alongside industry, community partners, and the Federal Aviation Administration.
Once developed, passengers and cargo will travel on-demand in innovative, automated aircraft called eVTOLs, across town, between neighboring cities, or to other locations typically accessed today by car.
The addition of Advanced Air Mobility will benefit the public in several ways: easier access for travelers between rural, suburban, and urban communities; rapid package delivery; reduced commute times; disaster response, and new solutions for medical transport of passengers and supplies.
Various NASA simulation and flight testing efforts will study noise, automation, safety, vertiports, airspace development and operations, infrastructure, and ride quality, along with other focus areas like community integration.
These areas all need to be further researched before Advanced Air Mobility could be integrated into our skies. We’re helping emerging aviation markets navigate the creation of this new transportation system.
We provide various test results to the FAA to help with new policy and standards creation. We aim to give industry and the FAA recommendations for requirements to build a scalable Advanced Air Mobility system to help enable the industry to flourish by 2030.
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By now everyone knows that we are to thank for the memory foam in your mattress and the camera in your cell phone. (Right? Right.)
But our technology is often also involved behind the scenes—in ways that make the products we use daily safer and stronger, and in some cases, that can even save lives.
Here are some examples from this year’s edition of Spinoff, our yearly roundup of “space in your life”:
What happens to your car bumper in an accident? When does it crumple and when does it crack? And are all bumpers coming off the assembly line created equal?
These types of questions are incredibly important when designing a safe car, and one technology that helps almost every U.S. automobile manufacturer find answers is something we helped develop when we had similar questions about the Space Shuttle.
Before flying again after the Columbia disaster in 2003, we had to be sure we understood what went wrong and how to prevent it from ever happening again. We worked with Trilion, Inc. to develop a system using high-speed cameras and software to analyze every impact—from the one that actually happened on the Shuttle to any others we could imagine—and design fixes.
We’re pretty good at finding things you can’t see with the naked eye—from distant exoplanets to water on Mars.
But there are also plenty of uses for that know-how on Earth.
One example that has already saved lives: locating heartbeats under debris.
Engineers at our Jet Propulsion Laboratory adapted technology first devised to look for gravity fluctuations to create FINDER, which stands for Finding Individuals for Disaster and Emergency Response and can detect survivors through dense rubble.
We have licensed the technology to two companies, including R4, and it has already been used in natural disaster responses, including after earthquakes in Nepal, Mexico City, Ecuador, and after Hurricane Maria in Puerto Rico.
As we have seen this year with devastating wildfires in California, forest fires can spread incredibly quickly.
Knowing when to order an evacuation, where to send firefighters, and how to make every other decision—all amid a raging inferno—depends on having the most up-to-date information as quickly as possible.
Using our expertise in remote sensing and communicating from space, we helped the U.S. Forest Service make its process faster and more reliable, so the data from airborne sensors gets to decision makers on the front line and at the command center in the blink of an eye.
When paramedics come racing into a home, the last thing anybody is worrying about is where the ambulance was earlier that morning. A device we helped create ensures you won’t have to.
AMBUstat creates a fog that sterilizes every surface in an ambulance in minutes, so any bacteria, viruses or other contaminants won’t linger on to infect the next patient.
This technology works its magic through the power of atomic oxygen—the unpaired oxygen atoms that are common in the upper reaches of Earth’s atmosphere. We’ve had to learn about these atoms to devise ways to ensure they won’t destroy our spacecraft or harm astronauts, but here, we were able to use that knowledge to direct that destructive power at germs.
Did you know the air we breathe inside buildings is often up to 10 times more polluted than the air outdoors?
Put the air under a microscope and it’s not pretty, but a discovery we made in the 1990s can make a big impact.
We were working on a way to clear a harmful chemical that accumulates around plants growing on a spacecraft, and it turned out to also neutralize bacteria, viruses, and mold and eliminate volatile organic compounds.
Now air purifiers using this technology are deployed in hospital operating rooms, restaurant kitchens, and even major baseball stadiums to improve air quality and keep everyone healthier. Oh, and you can buy one for your house, too.
Car companies are moving full-speed ahead to build the driverless cars of the not-so-distant future. Software first created to help self-learning robots navigate on Mars may help keep passengers and pedestrians safer once those cars hit the road. The software creates an artificially intelligent “brain” for a car (or drone, for that matter) that can automatically identify and differentiate between cars, trucks, pedestrians, cyclists, and more, helping ensure the car doesn’t endanger any of them.
So, now that you know a few of the spinoff technologies that we helped develop, you can look for them throughout your day. Visit our page to learn about more spinoff technologies: https://spinoff.nasa.gov Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com.
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Traveling is one of life’s greatest joys, but it often comes with an environmental cost. Luckily, sustainable travel isn’t as hard or complicated as it may seem. By making a few mindful choices, you can enjoy your adventures while reducing your impact on the planet. Here are ten easy ways to make your next trip greener and more responsible.
Look for hotels and resorts that prioritize sustainability. Many accommodations now have green certifications or practices, such as using renewable energy, reducing waste, or supporting local communities. Websites like Green Key or BookDifferent can help you find these eco-friendly stays.
Packing light not only makes your trip more convenient but also reduces your carbon footprint. The heavier the plane or vehicle, the more fuel it consumes. Stick to essentials, and choose reusable items like water bottles, tote bags, and travel utensils to minimize waste.
You don’t always have to go far to have an amazing experience. Explore nearby destinations and support local tourism. This reduces the emissions associated with long-haul flights and helps boost local economies.
Once you’ve arrived at your destination, ditch the rental car and opt for public transport, cycling, or walking. Not only are these options greener, but they also allow you to experience the local culture and environment more intimately.
If you must fly, consider offsetting your carbon footprint through reputable organizations like Gold Standard or Cool Effect. These initiatives support projects like reforestation and renewable energy, balancing out your travel emissions.
Instead of dining at big chains or shopping at international stores, choose local restaurants, markets, and craft shops. This helps sustain the local economy and ensures your money benefits the community you’re visiting.
Avoid tourist attractions that exploit animals or damage natural habitats. Choose ethical wildlife tours and respect local regulations, such as staying on designated trails or keeping a safe distance from animals.
Plastic waste is a global issue, especially in popular tourist areas. Bring your own reusable water bottle, straws, and containers. Many airports and cities now have refill stations to encourage this practice.
Instead of cramming as many destinations into one trip as possible, focus on exploring one location deeply. Slow travel reduces transportation emissions and allows you to form a stronger connection with the place and its people.
Sustainability starts with awareness. Learn about the environmental and social challenges in the places you visit and share your knowledge with fellow travelers. The more people adopt eco-friendly practices, the bigger the collective impact.
Sustainable travel is more than just a trend; it’s a responsibility we all share to protect the planet and its communities. Every small step counts, from packing smarter to supporting local businesses. By incorporating these tips into your next adventure, you can enjoy the beauty of the world while ensuring it remains vibrant and accessible for future generations.
The Age of Flying_Cars is finally ready for Takeoff. https://phys.org/news/2018-03-cars-eye-takeoff-geneva-motor.html
Simple, yet original.
There’s a new long-distance travel option on the horizon: a double-decker bus with pods for sleeping. It’s called, simply, Cabin. And it’s an overnight service — like a red-eye — designed for people who love going places, but hate being in transit.
I found a broom on the bus...
Я нашла в автобусе веник...
On an Average Day, What Do You Spend Money On?
It’s striking that one in three Americans claim to keep a monthly budget, but most people don’t know how much they spend on a single day. Now, some of us use mobile apps for budgeting, but for those who don’t, how much do you think you spend? Let’s go through a day in an average person’s shoes. Transportation takes a huge chunk out of our wallets. In a year, the second most expensive expenditure…
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I don’t really have a choice since I can’t drive or afford a car. It’s bike or bus for me, ride shares are too expensive. But honestly I like bike riding anyway.
Bike propaganda by me
Hong Kong. Whew. Yesterday’s post was something. Wasn’t it? I try not to do that… often. Anyway. We can’t go to Lithuania. The southern border is around 20 miles from Horodok, or Grodno, as they say in the local language — Belorussian. Why does that matter? My paternal great grandparents lived and worked there. I know very little about them other than their names were Nikolas and Eugenie.…
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