Clarity and focus: A one-page micro-project provides a clear, focused framework for outlining objectives, tasks, resources, and timelines, enhancing understanding and commitment among team members.

In conclusion, a one-page micro-project offers a structured, efficient approach to achieving specific goals, without the complexity of managing a full-scale project. By focusing on clarity, simplicity, and accountability, micro-projects can help organizations deliver results more quickly and effectively than traditional project management methods.


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The Common Fund's Human Microbiome Project (HMP) developed research resources to enable the study of the microbial communities that live in and on our bodies and the roles they play in human health and disease.

Microscopic study of the healthy human body has demonstrated that microbial cells outnumber human cells by about ten to one. Prior to the start of the HMP, this abundant community of human-associated microbes remained largely unstudied, leaving their influence upon human development, physiology, immunity, and nutrition almost entirely unknown. The HMP was established with the mission of generating research resources, which were rapidly and broadly shared, enabling comprehensive characterization of the human microbiota and their metabolic capabilities and analysis of their role in human health and disease. The information generated by HMP is now available worldwide for use by investigators and others in efforts to understand and improve human health.

The first phase of HMP was focused on the development of DNA sequence datasets and computational tools for characterizing the microbiome in healthy adults and in people with specific microbiome-associated diseases. An Ethical, Legal and Societal Implications (ELSI) component of the program evaluated issues which arise from human microbiome research. The second phase of HMP, known as the integrative HMP or iHMP, was focused on creating integrated datasets of multiple biological properties from both the microbiome and the host over time in people with specific microbiome-associated diseases. The long-term objective of iHMP was to develop datasets and tools that the community can use to evaluate which biological properties of the microbiome and host yield important new insights in understanding human health and disease.

The Human Microbiome Project has transitioned from Common Fund support. Common Fund programs are strategic investments that achieve a set of high-impact goals within a 5-10 year timeframe. At the conclusion of each program, deliverables transition to other sources of support or use by the broader scientific community.

The HMP was supported by the Common Fund from 2007 to 2016. Non-HMP investment in microbiome research at the NIH has increased over forty-fold since the inception of the HMP and spans over 20 of the NIH Institutes and Centers. Additional information about the growth of microbiome research can be found in a publication analyzing the total NIH microbiome portfolio from 2007 to 2016. For more information about the microbiome research that is currently being supported please see the Trans-NIH Microbiome Working Group page.

Researchers from the HMP's second phase - Integrative or iHMP - published a series of papers in the Nature family of journals in May of 2019 on host and microbiome interactions in pregnancy and preterm birth, inflammatory bowel disease, and prediabetes. View the collection of papers.

The data generated by the HMP project have allowed researchers to answer numerous questions about the way the microbiome interacts with our bodies and our health. Examples of the research enabled by HMP can be found here.

The Micro-Budget Project Agreement is designed to provide a streamlined signatory process for independent producers who have a project with a budget of $20,000 or less per picture (or per episode of episodic projects).

The Micro-Budget Project Agreement is designed to provide a streamlined signatory process for independent producers who have a project with a budget of $20,000 or less per picture (or per episode of episodic projects). Click here to learn more!

A single file Django micro project created for demonstration purposes to be used in the same way as other Python frameworks. - GitHub - pauloxnet/uDjango: A single file Django micro project created...

My original idea with siteplan was to allow a quick way to start and run a new django project (or app). The official way is to always start a minimal app that contains at least the following:models.pysettings.pyurls.pyApparently, you need...

MicroPython is a lean and efficient implementation of the Python 3 programming language that includes a small subset of the Python standard library and is optimised to run on microcontrollers and in constrained environments.

The MicroPython pyboard is a compact electronic circuit board that runs MicroPython on the bare metal, giving you a low-level Python operating system that can be used to control all kinds of electronic projects.

MicroPython is packed full of advanced features such as an interactive prompt, arbitrary precision integers, closures, list comprehension, generators, exception handling and more. Yet it is compact enough to fit and run within just 256k of code space and 16k of RAM.

MicroPython is a full Python compiler and runtime that runs on the bare-metal. You get an interactive prompt (the REPL) to execute commands immediately, along with the ability to run and import scripts from the built-in filesystem. The REPL has history, tab completion, auto-indent and paste mode for a great user experience.

MicroPython strives to be as compatible as possible with normal Python (known as CPython) so that if you know Python you already know MicroPython. On the other hand, the more you learn about MicroPython the better you become at Python.

MicroPython is written in C99 and the entire MicroPython core is available for general use under the very liberal MIT license. Most libraries and extension modules (some of which are from a third party) are also available under MIT or similar licenses.

With the support of the East County cities, CCTA and Tri Delta Transit are developing the Automated Transit Network (ATN) Project to bring the future of transportation to East Contra Costa County. With the tap of an app, riders can request a trip on a self-driving, zero-emission shuttle so they can stay on the move and avoid traffic, all while helping the environment. Once completed, the ATN Project will deliver a system of safe, on-demand, personalized electric vehicles, with fares similar to existing public transportation options. Bay Area-based urban mobility company Glydways will provide the ATN Project with futuristic, four-person shuttles called Glydcars, which will travel in guideways that are fully separated from traffic. This cutting-edge project will reduce congestion on State Route 4 (SR-4) and surrounding roads, while enhancing transit accessibility in East County by improving connections to existing options such as BART and local bus services.

CCTA and Tri Delta Transit are working together to implement the ATN Project with a public-private partnership (P3) delivery method. After a lengthy procurement process, CCTA and Tri Delta Transit selected East County Connection Partners, LLC (ECCP) as the P3 team to identify and pursue funding to deliver an initial viable segment of the project. ECCP is made up of transportation innovators Glydways and Plenary Americas and lead construction contractor Flatiron.

As the first pilot program of its kind, the micro-reactor pilot program must undergo significant scrutiny and coordination from the agencies involved in its success. In September 2022, the Department of the Air Force, in partnership with the DLA Energy, released a request for proposal (RFP) for the project. The power purchase agreement RFP closed on January 31, 2023.

Permitting and licensing activities, including the National Environmental Policy Act (NEPA) assessment are expected to begin by 2024. Micro-reactor demonstration and operational testing is targeted to begin in 2027. *

Microbes inhabit just about every part of the human body, living on the skin, in the gut, and up the nose. Sometimes they cause sickness, but most of the time, microorganisms live in harmony with their human hosts, providing vital functions essential for human survival. For the first time, a consortium of researchers organized by the National Institutes of Health has mapped the normal microbial makeup of healthy humans, producing numerous insights and even a few surprises.

Researchers found, for example, that nearly everyone routinely carries pathogens, microorganisms known to cause illnesses. In healthy individuals, however, pathogens cause no disease; they simply coexist with their host and the rest of the human microbiome, the collection of all microorganisms living in the human body. Researchers must now figure out why some pathogens turn deadly and under what conditions, likely revising current concepts of how microorganisms cause disease.

In a series of coordinated scientific reports published on June 14, 2012, in Nature and several journals in the Public Library of Science (PLoS), some 200 members of the Human Microbiome Project (HMP) Consortium from nearly 80 universities and scientific institutions report on five years of research. HMP has received $153 million since its launch in fiscal year 2007 from the NIH Common Fund, which invests in high-impact, innovative, trans-NIH research. Individual NIH institutes and centers have provided an additional $20 million in co-funding for HMP consortium research.

To define the normal human microbiome, HMP researchers sampled 242 healthy U.S. volunteers (129 male, 113 female), collecting tissues from 15 body sites in men and 18 body sites in women. Researchers collected up to three samples from each volunteer at sites such as the mouth, nose, skin (two behind each ear and each inner elbow), and lower intestine (stool), and three vaginal sites in women; each body site can be inhabited by organisms as different as those in the Amazon Rainforest and the Sahara Desert. 152ee80cbc

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