creativity

Joy today: How Twitter gave me my new writing opportunity

As many of you know, I’ve been working on my science writing and bringing since into my career as a product developer. I’m so excited to share that over the next few months, one of my favorite biomimicry publications is going to publish a series of pieces I’ve been wanting to write. I’m over the moon excited about this, and as a source of inspiration, I wanted to share how it all came about.

Twitter magic and the glass sponge
I’m pretty active on Twitter where my feed is mashup of different topics, two main ones being my writing and my work in biomimicry. A couple of weeks ago, I learned about the glass sponge for a grad school assignment.

Very quick recap: the glass sponge lives on the ocean floor over 1000 meters below sea level and is one of the oldest species in existence today. It builds one of the the most stable structures on Earth with the minimal amount of material needed. Its glass is transparent, flexible, and created from sea minerals (such as calcium carbonate, salt, and carbon dioxide) at ocean temperatures (~4 degrees Celsius, ~39 degrees Fahrenheit). It is created and then biodegrades without any toxic waste. Human-made glass is extremely fragile, expensive, and dirty to create—glass and cement production generates 5-7% of the Earth’s greenhouse gas emissions. It requires very hot temperatures in a kiln and therefore is also energy intensive.

Though we’ve known about the glass sponge for decades, engineers, designers, and scientists have no idea how it creates its glass and we’ve never been able to replicate its far superior product. It’s an absolute mystery. But when we learn its secrets, it has the potential to transform our construction industry into one that’s sustainable, clean, and healthy for the planet.

Power to the crowd
So…back to my writing. I wrote a tweet about the magnificent glass sponge just as part of my regular social media promotion of science and biomimicry. It got a lot of attention and became the 2nd most shared story about biomimicry on Twitter the week I posted it, second only to one my Mashable. That got the attention of this publication, and they asked me if I’d like to write something for them. And heck yes, I would!

What I’ll be writing
They asked me to pitch a topic to them. True to my brand, I gave them 10 pitches hoping there might be one in there that they’d like. To my surprise, they loved them all and asked me to write one a month. So, we’re off the races and here are the first few topics that will be coming out in the next few months:

1. Biomimicry and the Green New Deal (November)
2. Biomimicry and materials science (December)
3. Biomimicry makes the case for species conservation (January)
4. Medical applications of biomimicry (February)

I tell this story because I want it to inspire you to get out there and shout about what you love, what fascinates you, not because you hope it gets you something but just because you love it so much that you can’t keep it to yourself. I’m thrilled by this development in my writing. Shocked even. And even if no one liked the glass sponge tweet, it wouldn’t have mattered because I love it and wanted to share it.

The big publishing take-away
That’s the bit no one ever told me about publishing. In the age when people are obsessed with platform and followers and likes and retweets, too many of us have forgotten about joy. That’s the thing to focus on. That’s the secret sauce that keeps us going. Fill up your head, heart, hands, and feeds with joy, and see what happens. It’s a skeleton key that unlocks doors we didn’t even know were there.

creativity

Joy: I believe science (and writing about it) is service

I just heard about President Jimmy Carter’s fall. This weekend, I learned a friend’s mother sustained a serious injury from a fall. Over the summer, we lost a dear friend of our family after he fell and injured his spine.

Recently, I’ve started to think about how I could use biomimicry to develop products that protect older adults from falling injuries. The stats are more startling than I realized:

– Every 11 seconds, an older adult is treated in the ER for a fall
– 1:4 Americans over the age of 65 falls each year—29M falls causing 7M injuries
– Scariest of all, every 19 minutes an older adult dies from a fall

People ask me why science is so important to me, why I would make this career change now to study biomimicry when I could just happily continue along as a fan and promoter of science, and not a practicing scientist. This is why: it can change people’s lives. Science is service, and if we aren’t being of service to one another then what are we doing with our time? There are many ways to serve – millions of them every moment of every day. The combination of science, product development, business, and writing about all of it just happens to be the one that lights me up.

creativity

Joy today: The Imagine Science Film Festival starts this Friday

Screen Shot 2019-10-14 at 12.45.38 PM
Image taken from Science for Nanos: Taking Flight
creativity

Joy today: A podcast about biomimicry

Hi all! Quick question for you: I’ve thought about starting a biomimicry podcast because there isn’t one (which is shocking considering there’s a podcast for nearly everything!?) If I did start one—interviewing people who practice, use, teach, and study biomimicry, and talking about new cool biomimicry inspirations—would you listen?

In case you haven’t heard of biomimicry, it’s the practice of applying the genius designs of nature to the human-built environment. This could be products, systems, processes, buildings, whole cities, you name it! If humans design it, looking to nature for design inspiration and guidance will make designs more sustainable, efficient, and beneficial for the planet. Check out more about what biomimicry is by visiting https://biomimicry.org/.

creativity

Joy today: Can mussels be the solution to our water crisis?

What is it about biomimicry that has me so fired up to make it the center of my business career? It’s articles like this piece on NPR about how mussels can clean oil and heavy metals from water. Nature holds the key to so many problems we have. It already knows what to do; it already has the solutions we are so desperate to find. (And given the state of our planet, our desperation is justified!) Our job now is to listen, to watch, to observe, and then replicate what works. We can do this. (Big thanks to my dear friend, Edith Gonzalez, who helped me find a new way forward when I was at first unsure, and to Brian McCormack, who sent me this article and constantly helps me find the light amidst so much darkness.

 

creativity

Joy today: I’m going to Sci Comm Camp in November

Screen Shot 2019-08-17 at 9.26.49 AMI found summer camp for science nerds – but even better because it’s during the Fall, my favorite season. And I’m going!

Yesterday I was listening to Ologies podcast and Alie Ward mentioned Sci Comm Camp, a gathering that takes place over a long weekend in November outside of LA. There are workshops, fun presentations, and plenty of downtime to connect with people who love science and are passionate about sharing science with others.

Given my graduate studies in biomimicry at Biomimicry 3.8 and Arizona State University, my desire to spread this practice as far and wide as possible, and my love for collaborating and learning from others, this seems like the perfect event for me. Plus, I’m hoping to sneak in a trip to see some L.A. pals while I’m there. Already looking forward to November!

creativity

Joy today: Happy 50th birthday to the moon landing

Happy 50th birthday to the moon landing! If you are anywhere near NYC before Sept 22nd, I highly recommend seeing The Metropolitan Museum of Art, New York‘s exhibit Apollo’s Muse: The Moon in the Age of Photography, a beautiful combo of science, art, & dreams.

Among my favorite pieces there:

  • Images from and of the refracting telescope at Lick Observatory (1870s and 1880s)
  • The first book entirely dedicated to the moon (from 1647)
  • Images from the lunar atlas created at the Lick Observatory (1897)
  • Venice by the light of the moon (a trick of photography by Carlo Naya – 1875)
  • A light-refracting telescope similar in technology to the one used by Galileo (1800)
creativity

Joy today: Science visually shows how bullying impacts life

New York fifth grader, Samantha Petraglia, demonstrates the impact of bullying in her science project by using an unlikely subject—a plant. The results? In 6 days, the bullied plant began to die. The one that was encouraged thrived. They had the same water, the same sunlight, and the same space on the shelf. Kindness matters; kindness makes all the difference.

Link to the full news story here:
https://newyork.cbslocal.com/2019/05/15/bullied-plants-project-bullying-samantha-petraglia-long-island-coalition-against-bullying/

 

creativity

Joy today: One step closer to a fatberg free NYC

This is what a failed product development experiment looks like. I’m sharing this because I think it’s important to talk more about failure, especially in science.

I spoke to Michael DeLoach & NYC Water about the #FatbergFreeNYCinitiative. As a grad student at The Biomimicry Center I’m learning to use biomimicry principles and my experience in product development to invent a flushable wipe to eliminate fatbergs.
http://fatbergfree.nyc

This was my green chemistry solution and my finished product. My dachshund, Phineas, is my lab assistant. He’s a bit like Beaker so I guess that makes me Bunsen Honeydew. We listened to the podcasts Harry Potter and the Sacred Text, Ologies Podcast, and The Story Collider to stay inspired as we did our research.

This was only the 1st attempt. It failed. And that’s okay. I stand by the green chemistry solution. I just need to find a sturdier delivery material that quickly biodegrades. Trial #2 is already underway.

And given that it’s May Day, a day when we celebrate those who work, toil, tinker, and invent, here’s 3 cheers for all of you working to solve our world’s toughest challenges and make this a better planet for all beings.

creativity

Joy today: What the rainforest can teach us about product development

This week in my biomimicry program, I got to study patterns in tropical rainforests and apply them to products as if I were a product development consultant (which is what I’m planning to do with my degree when I finish my program.) It was such a blast and I got a lot of supportive feedback on my ideas from my classmates so I thought I would share them with you as well.

My audience is a set of product developers who have been tasked with making their products and systems more sustainable and less toxic.

What are the three most compelling patterns in life’s strategies in the rainforest that you want to bring to the table?

1.) The rainforest produces vibrant colors without toxic chemicals.

2.) Leaves of plants close to the rainforest floor under the dense canopy have structures that collect and focus light.

3.) Animals in the rainforest have adaptations to help them regulate their body temperature.

—
Articulate simple design principles for each of the three patterns.

Pattern: Color creation

Biology model:
The blue morpho butterfly (Morpho peleides) are magicians of color. Luckily for us, science demystifies their powers and teaches us how they get their trademark iridescent blue color. Its secrets lie in the architecture of its wings. Imagine this beautiful butterfly with an 8-inch wingspan flitting from flower to flower in the Colombian rainforest’s sunshine. The light hits its wings and rather than absorb and reflect back light as most objects do, the morpho’s wings diffract and interfere with the light. When we look closely, a morpho’s wings aren’t smooth. They have peaks and valleys that overlap, similar to roof tiles. The space between the overlapping scales and the height of the ridges of those scales on its wings have a direct impact on the color. In the case of the morpho, the spaces between the scales are exactly half the size of the wavelength of blue light. This is what causes the intense, iridescent blue of its wings.

—

Pattern: Focus light

Biological model:
Clubbed begonia (Begonia cucullata) grow along the floor of the rainforests in Asia. Because the canopy of a rainforest is dense, plants on the lower levels need to develop adaptations to collect as much light as they can to perform photosynthesis. Begonia leaves have a set of cells on the surface that focus light, similar in function to glass lenses. This allows them to collect and concentrate diffuse (indirect) light. Then it directs that light to the grains of chlorophyll in the leaves.

—

Pattern: Regulate body temperature

Biological model:
The common toucan (Ramphastos toco) lives in the canopy layer of the rainforests of South and Central America. In an environment where the temperature ranges between 70 and 85 degrees and the humidity is 77% – 88% year-round, the toucan has to expertly regulate its body temperature. The genius adaptation it uses is its beak—the largest beak (and therefore surface area) relative to body size in the animal kingdom. By regulating the blood flow to its beak, it controls its thermal radiation and therefore its body temperature. This adaptation is seen in a number of other animals structures such as the large ears of elephants and jackrabbits, and the skin of iguanas.

—

What simple application ideas, inspired by your design principles, would you use to help this group of designers understand some possibilities of ‘emulating nature’s designs’?

Color creation:
1.) Cosmetics that use the same microstructures rather than toxic chemicals to create color.

2.) Clothing / textile colors that use surface textures rather than toxic dyes.

3.) Paint that contains microstructures to produce vibrant colors without the use of toxins.

4.) Food coloring with microstructures rather than toxic colorants.

—

Light collection and focus:

1.) Solar cells that mimic the structures of begonia cells to collect and focus light, even during overcast days.

2.) Glass for building, home, and greenhouse windows that allow it to regulate light on cloudy days in order to reduce the need for artificial indoor lighting.

3.) Glass for cell phones, computers, tablets, and televisions that allow for brighter displays outdoors without having to brighten display and use the battery or electricity unnecessarily. (The brightness of screens is one of the biggest drains on energy of electronic devices.)

—

Regulate temperature:

1.) Building architecture that uses recycled water systems below the outside surface to help regulate temperatures.

2.) The use of recycled water systems just below the surface of sidewalks, roadways, and bridges to regulate temperature (prevent overheating and freezing).

3.) Using recycled water systems to regulate the temperatures of vehicles—cars, boats, buses, planes, etc.