Optimize you home with these smart technologies. Photo courtesy of Caydon

With recent changes to the ways we work and live, the importance of smart home technology in apartment complexes is becoming more important than ever. Residents not only want to streamline their lifestyles, but are looking for ways to limit contact when performing interactions.

A great example of smart home technology can be found at Drewery Place in Midtown. Built by Australian property developer Caydon, Drewery Place is at the forefront of smart home technology, providing residents with plenty of options to simplify their lifestyles in contactless style. Below are just some of the smart home features that residents in this tech savvy development enjoy.

Latch keyless entry

Fumbling for your keys is a thing of the past. Now you can use your phone to open not only your apartment door, but also resident-only areas such as the fitness center, pool area and pet park.

Smart thermostats

Come home to the perfect climate with smart thermostat technology. Now you can flick on the heat or blast in the cool as you can control the temperature from anywhere on your phone.

Set the scene

You know those days when things are just a little too bright? Or maybe you want to lighten the mood a little? Whatever you're feeling, get your lighting to match it with dimmer and lighting controls on your phone. There's also a host of pre-programmed lighting scenes so you can set the mood for any occasion.

Alexa — your new best friend

All of Drewery Place's apartments are wired and ready for Amazon's smart assistant, Alexa. Using voice control, you can get Alexa to adjust lighting, play your favorite music, summon an Uber and even order Amazon packages.

Caydon HQ

All residents at Drewery Place can pay their rent, request a maintenance repair, book amenities, organize a dog walker or request a Spruce chore such as a deep clean for their apartment. You can also get notifications from the concierge on when packages arrive and arrange contactless pickup from the downstairs mail lockers.

Get physical

Not into group classes? Organize a training session for one, anytime at the fitness center using MIRROR gym technology. This is literally a magic mirror, where a virtual trainer will train with you in the class of your choice. There's over 20+ categories to choose from, plus they'll correct your form in real-time — so you get personalized attention minus the class numbers.

The staff at Drewery Place are also taking extra precautions to help stop the spread of COVID-19 with regular deep cleanings, social distancing protocol and signage throughout the building. If you want to learn more, you can organize a personal tour complete with masks and social distancing.

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Emma Alexander is acting chief of operations and director of sales and marketing for Caydon.

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Houston organizations launch collaborative center to boost cancer outcomes

new to HOU

Rice University's new Synthesis X Center officially launched last month to bring together experts in cancer care and chemistry.

The center was born out of what started about seven years ago as informal meetings between Rice chemist Han Xiao's research group and others from the Baylor College of Medicine’s Dan L Duncan Comprehensive Cancer Center at the Baylor College of Medicine. The level of collaboration between the two teams has grown significantly over the years, and monthly meetings now draw about 100 participants from across disciplines, fields and Houston-based organizations, according to a statement from Rice.

Researchers at the new SynthX Center will aim to turn fundamental research into clinical applications and make precision adjustments to drug properties and molecules. It will focus on improving cancer outcomes by looking at an array of factors, including prevention and detection, immunotherapies, the use of artificial intelligence to speed drug discovery and development, and several other topics.

"At Rice, we are strong on the fundamental side of research in organic chemistry, chemical biology, bioengineering and nanomaterials,” Xiao says in the statement. “Starting at the laboratory bench, we can synthesize therapeutic molecules and proteins with atom-level precision, offering immense potential for real-world applications at the bedside ... But the clinicians and fundamental researchers don’t have a lot of time to talk and to exchange ideas, so SynthX wants to serve as the bridge and help make these connections.”

SynthX plans to issue its first merit-based seed grants to teams with representatives from Baylor and Rice this month.

With this recognition from Rice, the teams from Xiao's lab and the TMC will also be able to expand and formalize their programs. They will build upon annual retreats, in which investigators can share unpublished findings, and also plan to host a national conference, the first slated for this fall titled "Synthetic Innovations Towards a Cure for Cancer.”

“I am confident that the SynthX Center will be a great resource for both students and faculty who seek to translate discoveries from fundamental chemical research into medical applications that improve people’s lives,” Thomas Killian, dean of the Wiess School of Natural Sciences, says in the release.

Rice announced that it had invested in four other research centers along with SynthX last month. The other centers include the Center for Coastal Futures and Adaptive Resilience, the Center for Environmental Studies, the Center for Latin American and Latinx Studies and the Rice Center for Nanoscale Imaging Sciences.

Earlier this year, Rice also announced its first-ever recipients of its One Small Step Grant program, funded by its Office of Innovation. The program will provide funding to faculty working on "promising projects with commercial potential," according to the website.

Houston physicist scores $15.5M grant for high-energy nuclear physics research

FUTURE OF PHYSICS

A team of Rice University physicists has been awarded a prestigious grant from the Department of Energy's Office of Nuclear Physics for their work in high-energy nuclear physics and research into a new state of matter.

The five-year $15.5 million grant will go towards Rice physics and astronomy professor Wei Li's discoveries focused on the Compact Muon Solenoid (CMS), a large, general-purpose particle physics detector built on the Large Hadron Collider (LHC) at CERN, a European organization for nuclear research in France and Switzerland. The work is "poised to revolutionize our understanding of fundamental physics," according to a statement from Rice.

Li's team will work to develop an ultra-fast silicon timing detector, known as the endcap timing layer (ETL), that will provide upgrades to the CMS detector. The ETl is expected to have a time resolution of 30 picoseconds per particle, which will allow for more precise time-of-flight particle identification.

The Rice team is collaborating with others from MIT, Oak Ridge National Lab, the University of Illinois Chicago and University of Kansas. Photo via Rice.edu

This will also help boost the performance of the High-Luminosity Large Hadron Collider (HL-LHC), which is scheduled to launch at CERN in 2029, allowing it to operate at about 10 times the luminosity than originally planned. The ETL also has applications for other colliders apart from the LHC, including the DOE’s electron-ion collider at the Brookhaven National Laboratory in Long Island, New York.

“The ETL will enable breakthrough science in the area of heavy ion collisions, allowing us to delve into the properties of a remarkable new state of matter called the quark-gluon plasma,” Li explained in a statement. “This, in turn, offers invaluable insights into the strong nuclear force that binds particles at the core of matter.”

The ETL is also expected to aid in other areas of physics, including the search for the Higgs particle and understanding the makeup of dark matter.

Li is joined on this work by co-principal investigator Frank Geurts and researchers Nicole Lewis and Mike Matveev from Rice. The team is collaborating with others from MIT, Oak Ridge National Lab, the University of Illinois Chicago and University of Kansas.

Last year, fellow Rice physicist Qimiao Si, a theoretical quantum physicist, earned the prestigious Vannevar Bush Faculty Fellowship grant. The five-year fellowship, with up to $3 million in funding, will go towards his work to establish an unconventional approach to create and control topological states of matter, which plays an important role in materials research and quantum computing.

Meanwhile, the DOE recently tapped three Houston universities to compete in its annual startup competition focused on "high-potential energy technologies,” including one team from Rice.

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This article originally ran on EnergyCapital.