The Summit gathers housing, transportation, and community development advocates and leaders to learn from one another and identify tools to advance racial equity through smart growth. The Equity Summit will be held in person for the first time on March 27-28, 2024, in Washington, DC.

We envision a country where no matter where you live, or who you are, you can enjoy living in a place that is healthy, prosperous, and resilient. Sound like your kind of thing? Add your name to the Smart Growth America email list to receive news, updates, and alerts about smart growth work on both the national and local levels.


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In December 2015, we launched our Smart City Challenge, asking mid-sized cities across America to develop ideas for an integrated, first-of-its-kind smart transportation system that would use data, applications, and technology to help people and goods move more quickly, cheaply, and efficiently. The Challenge generated an overwhelming response: 78 applicant cities shared the challenges they face and ideas for how to tackle them. Then, our seven finalists worked with DOT to further develop their ideas.

You are totally free to use Servier Medical Art images as you want. No permission is required. Please use the link smart.servier.com to cite Servier Medical Art in your references. More info

The Department of Energy (DOE) will invest almost $10 million to expand efforts to support the emergence of smart, energy-efficient and low-emission cities that are leveraging Smart Cities technologies. These new steps include:

IBM is deploying a Smarter Cities Challenge team in Detroit to help the city and the Detroit Land Bank Authority (DLBA) remove blight and build smarter Detroit neighborhoods. Through this initiative, a team of top IBM experts will spend three weeks helping Mayor Mike Duggan and the DLBA design a strategy for cost-efficient, sustainable removal, recycling and re-use of debris from abandoned and neglected properties, thereby allowing the DLBA to redirect its limited resources to making strategic investments in neighborhoods. The project will also receive a special grant of Twitter data, which will provide analysis of historical and current social media data to help tackle the issue.

August partners with the leaders in the smart home space so everything works together. Pair the Wi-Fi Smart Lock with Alexa, Google Assistant, Siri and more, to enable voice assistance for even more convenience. View integrations

August Smart Lock Pro integrates easily into your smart home. August partners with leaders in the smart home space so everything works together. Pair the Smart Lock Pro with Alexa, the Google Assistant, or Siri, to enable voice commands that lock, unlock, and check the status of your door. With HomeKit built in, you can pair your lock to these existing smart home networks.

Smart Materials and Structures is a multi-disciplinary journal dedicated to technical advances in (and applications of) smart materials, systems and structures; including intelligent systems, sensing and actuation, adaptive structures, and active control.

Materials and structures with negative Poisson's ratio exhibit a counter-intuitive behaviour. Under uniaxial compression (tension), these materials and structures contract (expand) transversely. The materials and structures that possess this feature are also termed as 'auxetics'. Many desirable properties resulting from this uncommon behaviour are reported. These superior properties offer auxetics broad potential applications in the fields of smart filters, sensors, medical devices and protective equipment. However, there are still challenging problems which impede a wider application of auxetic materials. This review paper mainly focuses on the relationships among structures, materials, properties and applications of auxetic metamaterials and structures. The previous works of auxetics are extensively reviewed, including different auxetic cellular models, naturally observed auxetic behaviour, different desirable properties of auxetics, and potential applications. In particular, metallic auxetic materials and a methodology for generating 3D metallic auxetic materials are reviewed in details. Although most of the literature mentions that auxetic materials possess superior properties, very few types of auxetic materials have been fabricated and implemented for practical applications. Here, the challenges and future work on the topic of auxetics are also presented to inspire prospective research work. This review article covers the most recent progress of auxetic metamaterials and auxetic structures. More importantly, several drawbacks of auxetics are also presented to caution researchers in the future study.

A macro-fiber composite (MFC) is a class of smart material actuator that employs piezoceramic fibers to extend or contract under an applied electric field. When embedded on a thin substrate, actuated MFCs induce surface pressure, resulting in out-of-plane motion. Design characteristics of the substrate, such as anisotropy, give rise to unique bend/twist behavior. Previous studies on MFC applications have focused on optimizing patch location in relation to the local design to achieve optimal bend/twist motion. However, the resolution to these approaches is restricted to the design space of the application, presenting an absence in piezoelectric laminate design intuition. This research aims to streamline the initial optimization process by analyzing the significant material properties associated with substrate design. To accomplish this, a viscoelastic piezoelectric plate theory model is developed to accurately capture the displacement behavior of the MFC laminate for any given substrate design. Experimental data is used to validate and refine the model, ensuring it closely represents real-world physics. A 2k fractional factorial design of experiments approach is used to identify significant substrate properties per MFC laminate configuration, assigning each material property a two-level coding system. Three configurations are observed, with each exhibiting distinct significant properties and effects compared to others. Furthermore, the study explores the impact of thermal factors on substrate behavior for these MFC laminates, highlighting how significant properties can be temperature dependent. The contributions to the kinematic response due to substrate property perturbation varies uniquely per material property and MFC laminate configuration. Statistical evidence supports the notion that the hysteretic behavior of a material is unaffected by thermal influences and is solely determined by the elastic constants of the substrate. The maximum remanent hysteretic response is shown to be proportional to the maximum actuation response at near room temperature.

Automatically track your shots without your phone. Link is a small, powerful, ultralight wearable that seamlessly syncs with your smart sensors and the Arccos app. This eliminates the need to carry your phone in play.

When you build an Alexa smart home skill, users can voice-control their cloud-connected devices by using your skill. The smart home interfaces use the pre-built voice interaction model. This model gives you a set of predefined utterances that users say to control your device.When a user speaks to Alexa, Alexa interprets the utterance and sends a message to your skill that communicates the request. Your skill reacts to the message by changing the state of the device, such as by dimming a light, or by sending information about device state, such as by telling the user whether a light is on or off.

If you want to connect your smart home device to Alexa without a skill, see Smart Home Device Connection Options. If you want to connect your Alexa Built-in device to Alexa, see AVS Device SDK Smart Home Endpoints. If you want to integrate a hardware module into your product to connect to Alexa, see Alexa Connect Kit. 17dc91bb1f

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