Houston's not so hot for remote workers, as it turns out. thumbor.forbes.com

With many companies encouraging — or commanding — that remote workers return to the office in 2023, more and more Americans are seeking employment opportunities that will give them the freedom to work from elsewhere.

Houston is (remotely) clocking in as the No. 49 best city for remote workers in 2023, according to a study by Forbes Advisor. The study examined 100 U.S. cities and metro areas, and ranked them based on the earning potential of remote workers, internet access, lifestyle amenities, worker friendliness, living costs, and more.

The Bayou City did get some points for providing a quality lifestyle, the report found. Of the cities with the best access to arts, entertainment, and dining establishments, Houston came in No. 8 — outpaced slightly by No. 4 Dallas-Fort Worth.

"Remote work saves workers time and money on commuting and office clothing, while keeping their morale and productivity levels high," the report said. "Ideally, you’d live in a place with an affordable cost of living, high earning potential, reliable internet connection, low taxes, a low unemployment rate, and various entertainment options."

Out of All of Texas, only one region makes the top 10. San Antonio-New Braunfels, Texas, snagged the No. 6 spot. Here's yhe top 10 U.S. metro areas for remote workers are:

  • No. 1 – Miami-Fort Lauderdale-West Palm Beach, Florida
  • No. 2 – Indianapolis-Carmel-Anderson, Indiana
  • No. 3 – Omaha-Council Bluffs, Nebraska-Iowa
  • No. 4 – Tulsa, Oklahoma
  • No. 5 – Detroit-Warren-Dearborn, Michigan
  • No. 6 – San Antonio-New Braunfels, Texas
  • No. 7 – Jacksonville, Florida
  • No. 8 – Tampa-St. Petersburg-Clearwater, Florida
  • No. 9 – Tuscon, Arizona
  • No. 10 – Cleveland-Elyria, Ohio

Houston ranks in dead last when compared to the other Texas cities in the top 50. Behind San Antonio is Dallas-Fort Worth-Arlington, ranked No. 15 nationally. Austin-Round Rock ranks as the third overall best metro area in Texas for remote workers at No. 39.

Austin did great in one category — internet access — but it seems that earning potential and lifestyle amenities just couldn't keep up. for Austinites, it's all in the Wi-Fi: a remote worker's most important tool.

Austin's average internet download speed is 425.90 Megabits per second (Mbps), and when coupled with the wide variety of free Wi-Fi hotspots around the city, Austin earned No. 3 in the category for "cities with the best internet access." And we do like to take advantage of that at restaurants and bars around town.

Rounding out the ranking was El Paso at No. 46, sneaking ahead of Houston, and McAllen-Edinburg-Mission gets an honorable mention at No. 85.

The full study can be found on forbes.com.

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This article originally ran on CultureMap.

San Antonio, Austin, and the space in between could be the state's next big mega-metro. Photo by Matthew LeJune on Unsplash

Surprising new documentary explores emerging Texas mega-metro that could rival Houston

bigger in texas

It's no secret that Austin and San Antonio are becoming some of the biggest cities in Texas, and that together, they just might rival the likes of Houston and Dallas-Fort Worth one day.

A new documentary called San Antonio-Austin: The Emerging Mega-Metro takes a deep dive into the booming 80-mile region between the Central Texas cities

Produced by KLRN, San Antonio's local PBS station, the program centers on the region's growth and the challenges that arise with such rapid expansion, such as water scarcity, environmental impacts, and increasingly common transportation and traffic woes.

They're issues that Houston residents know well, as the city's population continues to explode at a staggering rate.

"We know the area between San Antonio and Austin is growing at a tremendously rapid pace, but what is really happening is the development of a mega-metro that will be one of the biggest economic powerhouses in the world," says Shari St. Clair, the documentary's executive producer, in a release.

“We delve into the questions that need to be asked right now — how do we retain quality of life as we grow? How do we build a sustainable workforce?" St. Clair continues. "And, can San Antonio and Austin truly join forces and work together to make the most of this incredible opportunity?"

The hour-long documentary is hosted by former San Antonio mayor Henry Cisneros, who also authored The Texas Triangle: An Emerging Power in the Global Economy. The special highlights several prominent Central Texas leaders, including interviews with Austin Mayor Kirk Watson, San Antonio Mayor Ron Nirenburg, U.S. Congressman Greg Casar, and more.

As Texas is also a state of committed sports fans, the idea of a mega-metro between Austin and San Antonio is additionally explored through a sports lens. The documentary interviewed legends like Nolan Ryan, Sean Elliot, and Spurs Chairman Peter J. Holt.

San Antonio-Austin: The Emerging Mega-Metro can be watched online at klrn.org.

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This article originally ran on CultureMap.

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Houston engineers develop breakthrough device to advance spinal cord treatment

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A team of Rice University engineers has developed an implantable probe over a hundred times smaller than the width of a hair that aims to help develop better treatments for spinal cord disease and injury.

Detailed in a recent study published in Cell Reports, the probe or sensor, known as spinalNET, is used to explore how neurons in the spinal cord process sensation and control movement, according to a statement from Rice. The research was supported by the National Institutes of Health, Rice, the California-based Salk Institute for Biological Studies, and the philanthropic Mary K. Chapman Foundation based in Oklahoma.

The soft and flexible sensor was used to record neuronal activity in freely moving mice with high resolution for multiple days. Historically, tracking this level of activity has been difficult for researchers because the spinal cord and its neurons move so much during normal activity, according to the team.

“We developed a tiny sensor, spinalNET, that records the electrical activity of spinal neurons as the subject performs normal activity without any restraint,” Yu Wu, a research scientist at Rice and lead author of the study said in a statement. “Being able to extract such knowledge is a first but important step to develop cures for millions of people suffering from spinal cord diseases.”

The team says that before now the spinal cord has been considered a "black box." But the device has already helped the team uncover new findings about the body's rhythmic motor patterns, which drive walking, breathing and chewing.

Lan Luan (from left), Yu Wu, and Chong Xie are working on the breakthrough device. Photo by Jeff Fitlow/Rice University

"Some (spinal neurons) are strongly correlated with leg movement, but surprisingly, a lot of neurons have no obvious correlation with movement,” Wu said in the statement. “This indicates that the spinal circuit controlling rhythmic movement is more complicated than we thought.”

The team said they hope to explore these findings further and aim to use the technology for additional medical purposes.

“In addition to scientific insight, we believe that as the technology evolves, it has great potential as a medical device for people with spinal cord neurological disorders and injury,” Lan Luan, an associate professor of electrical and computer engineering at Rice and a corresponding author on the study, added in the statement.

Rice researchers have developed several implantable, minimally invasive devices to address health and mental health issues.

In the spring, the university announced that the United States Department of Defense had awarded a four-year, $7.8 million grant to the Texas Heart Institute and a Rice team led by co-investigator Yaxin Wang to continue to break ground on a novel left ventricular assist device (LVAD) that could be an alternative to current devices that prevent heart transplantation.

That same month, the university shared news that Professor Jacob Robinson had published findings on minimally invasive bioelectronics for treating psychiatric conditions. The 9-millimeter device can deliver precise and programmable stimulation to the brain to help treat depression, obsessive-compulsive disorder and post-traumatic stress disorder.

Houston clean hydrogen startup to pilot tech with O&G co.

stay gold

Gold H2, a Houston-based producer of clean hydrogen, is teaming up with a major U.S.-based oil and gas company as the first step in launching a 12-month series of pilot projects.

The tentative agreement with the unnamed oil and gas company kicks off the availability of the startup’s Black 2 Gold microbial technology. The technology underpins the startup’s biotech process for converting crude oil into proprietary Gold Hydrogen.

The cleantech startup plans to sign up several oil and gas companies for the pilot program. Gold H2 says it’s been in discussions with companies in North America, Latin America, India, Eastern Europe and the Middle East.

The pilot program is aimed at demonstrating how Gold H2’s technology can transform old oil wells into hydrogen-generating assets. Gold H2, a spinout of Houston-based biotech company Cemvita, says the technology is capable of producing hydrogen that’s cheaper and cleaner than ever before.

“This business model will reshape the traditional oil and gas industry landscape by further accelerating the clean energy transition and creating new economic opportunities in areas that were previously dismissed as unviable,” Gold H2 says in a news release.

The start of the Black 2 Gold demonstrations follows the recent hiring of oil and gas industry veteran Prabhdeep Singh Sekhon as CEO.

“With the proliferation of AI, growth of data centers, and a national boom in industrial manufacturing underway, affordable … carbon-free energy is more paramount than ever,” says Rayyan Islam, co-founder and general partner at venture capital firm 8090 Industries, an investor in Gold H2. “We’re investing in Gold H2, as we know they’ll play a pivotal role in unleashing a new dawn for energy abundance in partnership with the oil industry.”

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This article originally ran on EnergyCapital.

3 Houston innovators to know this week

who's who

Editor's note: Every week, I introduce you to a handful of Houston innovators to know recently making headlines with news of innovative technology, investment activity, and more. This week's batch includes an e-commerce startup founder, an industrial biologist, and a cellular scientist.

Omair Tariq, co-founder and CEO of Cart.com

Omair Tariq of Cart.com joins the Houston Innovators Podcast to share his confidence in Houston as the right place to scale his unicorn. Photo via Cart.com

Houston-based Cart.com, which operates a multichannel commerce platform, has secured $105 million in debt refinancing from investment manager BlackRock.

The debt refinancing follows a recent $25 million series C extension round, bringing Cart.com’s series C total to $85 million. The scaleup’s valuation now stands at $1.2 billion, making it one of the few $1 billion-plus “unicorns” in the Houston area.

Cart.com was co-founded by CEO Omair Tariq in October 2020. Read more.

Nádia Skorupa Parachin, vice president of industrial biotechnology at Cemvita

Nádia Skorupa Parachin joined Cemvita as vice president of industrial biotechnology. Photo courtesy of Cemvita

Houston-based biotech company Cemvita recently tapped two executives to help commercialize its sustainable fuel made from carbon waste.

Nádia Skorupa Parachin came aboard as vice president of industrial biotechnology, and Phil Garcia was promoted to vice president of commercialization.

Parachin most recently oversaw several projects at Boston-based biotech company Ginkjo Bioworks. She previously co-founded Brazilian biotech startup Integra Bioprocessos. Read more.

Han Xiao, associate professor of chemistry at Rice University

The funds were awarded to Han Xiao, a chemist at Rice University.

A Rice University chemist has landed a $2 million grant from the National Institute of Health for his work that aims to reprogram the genetic code and explore the role certain cells play in causing diseases like cancer and neurological disorders.

The funds were awarded to Han Xiao, the Norman Hackerman-Welch Young Investigator, associate professor of chemistry, from the NIH's Maximizing Investigators’ Research Award (MIRA) program, which supports medically focused laboratories. Xiao will use the five-year grant to advance his work on noncanonical amino acids.

“This innovative approach could revolutionize how we understand and control cellular functions,” Xiao said in the statement. Read more.