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anonymous

Cashew Nut Processing Based On Trivedi Effect, How It Is Good? - 2 views

The concept of transmitting energy to a living organism was introduced by Mr. Mahendra Trivedi. In his theories, he states that transmitting energy to any living organism wouldn't just optimize it,...

cashew nut processing organic gardening farming Trivedi Effect Mahendra testimonials

started by anonymous on 16 Jan 15 no follow-up yet
thinkahol *

Scientists suggest that cancer is purely man-made | KurzweilAI - 1 views

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    Cancer is a modern, man-made disease caused by environmental factors such as pollution and diet, a study by University of Manchester scientists has strongly
thinkahol *

First 'living' laser made from kidney cell - physics-math - 12 June 2011 - New Scientist - 0 views

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    It's not quite Cyclops, the sci-fi superhero from the X-Men franchise whose eyes produce destructive blasts of light, but for the first time a laser has been created using a biological cell. The human kidney cell that was used to make the laser survived the experience. In future such "living lasers" might be created inside live animals, which could potentially allow internal tissues to be imaged in unprecedented detail. It's not the first unconventional laser. Other attempts include lasers made of Jell-O and powered by nuclear reactors (see box below). But how do you go about giving a living cell this bizarre ability? Typically, a laser consists of two mirrors on either side of a gain medium - a material whose structural properties allow it to amplify light. A source of energy such as a flash tube or electrical discharge excites the atoms in the gain medium, releasing photons. Normally, these would shoot out in random directions, as in the broad beam of a flashlight, but a laser uses mirrors on either end of the gain medium to create a directed beam. As photons bounce back and forth between the mirrors, repeatedly passing through the gain medium, they stimulate other atoms to release photons of exactly the same wavelength, phase and direction. Eventually, a concentrated single-frequency beam of light erupts through one of the mirrors as laser light.
Janos Haits

Bolshoi Simulation | Home - 0 views

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    The Bolshoi simulation is the most accurate cosmological simulation of the evolution of the large-scale structure of the universe yet made ("bolshoi" is the Russian word for "great" or "grand").  The first two of a series of research papers describing Bolshoi and its implications have been accepted for publication in the Astrophysical Journal. The first data release of Bolshoi outputs, including output from Bolshoi and also the BigBolshoi or MultiDark simulation of a volume 64 times bigger than Bolshoi, has just been made publicly available to the world's astronomers and astrophysicists.
Skeptical Debunker

Scientists find an equation for materials innovation - 0 views

  • By reworking a theory first proposed by physicists in the 1920s, the researchers discovered a new way to predict important characteristics of a new material before it's been created. The new formula allows computers to model the properties of a material up to 100,000 times faster than previously possible and vastly expands the range of properties scientists can study. "The equation scientists were using before was inefficient and consumed huge amounts of computing power, so we were limited to modeling only a few hundred atoms of a perfect material," said Emily Carter, the engineering professor who led the project. "But most materials aren't perfect," said Carter, the Arthur W. Marks '19 Professor of Mechanical and Aerospace Engineering and Applied and Computational Mathematics. "Important properties are actually determined by the flaws, but to understand those you need to look at thousands or tens of thousands of atoms so the defects are included. Using this new equation, we've been able to model up to a million atoms, so we get closer to the real properties of a substance." By offering a panoramic view of how substances behave in the real world, the theory gives scientists a tool for developing materials that can be used for designing new technologies. Car frames made from lighter, strong metal alloys, for instance, might make vehicles more energy efficient, and smaller, faster electronic devices might be produced using nanowires with diameters tens of thousands of times smaller than that of a human hair.
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    Princeton engineers have made a breakthrough in an 80-year-old quandary in quantum physics, paving the way for the development of new materials that could make electronic devices smaller and cars more energy efficient.
Skeptical Debunker

Carbon Nanotube Speakers Could Be Powered by Lasers, Transform Noisy Spaces into Peacef... - 6 views

  • “Nanotubes assemblies of various types are black and highly conductive,” said Dr. Mikhail Kozlov, a research scientist and the study’s lead author. “Their dark, conductive surface can be effectively heated with laser light or electricity to induce variations in the pressure of the air around the nanotubes — which we perceive as sound. It’s called the photo- or thermo-acoustic effect, and it’s the same principle Alexander Graham Bell used to produce sound on the first telephone.” With laser excitation, no electrical contact with the nanotube speaker is required, making the speakers wireless. “Speakers made with carbon nanotube sheets are extremely thin, light and almost transparent,” Kozlov said. “They have no moving parts and can be attached to any surface, which makes the surface acoustically active. They can be concealed in television and computer screens, apartment walls, or in the windows of buildings and cars. The almost invisible strands form films that can ‘talk.’” In addition to filling a room with sound from invisible speakers, nanotube speakers could easily cancel sound from the noisiest neighbor or dim the roar of traffic rushing past a neighborhood, using the same principles as current sound-canceling technologies. “The sound generation by nanotube sheets can help to achieve this effect on very large scales,” Kozlov said.
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    A UT Dallas team's study published in the Journal of Applied Physics expands the extraordinary capabilities of nanotechnology to include laser-powered acoustic speakers made from assemblies of carbon nanotubes.
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    Amazing work being done with nanotechnology!
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    http://www.nlptrainingcoaching.com Neuro Linguistic Programming (NLP) Neuro Linguistic Programming (NLP) is the most proven and systematic way to understand, how your subconscious is presently programed for current level of success.
anonymous

Elemental Analysis For A Depth Understanding Of The Elements - 1 views

The horizons of science are unbound, and there is a huge intricacy in it. Scientists and researchers have been dedicating meticulous efforts for discovering new and amazing things every other day. ...

Elemental advanced materials research structural analysis thermal polymer science trivedi

started by anonymous on 02 Feb 15 no follow-up yet
anonymous

Comprehensive Structural Analysis Through Trivedi Effect - 1 views

We all will agree to the fact that engineers have made our lives comfortable and full of choices, and we all have access to numerous numbers of choices and we can always choose something that is be...

Structural analysis elemental analysis scientific research science experiments

started by anonymous on 16 Feb 15 no follow-up yet
anonymous

Polymer Engineering For Making Earth A Better Place To Live - 1 views

We live in a world where comfort happens to be the thing with utmost importance, we guys have spoiled all the resources along with the health of our planet for our personal comfort and we continue ...

Polymer engineering Trivedi Effect polymer science Trivedi Science

started by anonymous on 18 Feb 15 no follow-up yet
Erich Feldmeier

Researchers are using these Philly-made 'bioprinters' to make hearts, stomachs - Techni... - 0 views

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    "Researchers are using these Philly-made 'bioprinters' to make hearts, stomachs, BioBots makes a device that 3D-prints living cells instead of plastic."
susanbelly

How Fiber Optics Work? - 2 views

To understand how fiber optic cables work, imagine an infinitely long drinking straw or flexible plastic tube. For example, imagine a pipeline that is several kilometers long. Now, suppose the inne...

Science research TECHNOLOGY

started by susanbelly on 10 Mar 22 no follow-up yet
Erich Feldmeier

Kritika Moha, Gregory Weiss: Inexpensive, accurate way to detect prostate cancer: At-ho... - 0 views

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    "The same technology could potentially be used for bladder and multiple myeloma cancers, which also shed identifiable markers in urine. "Our goal is a device the size of a home pregnancy test priced around $10. Other prostate cancer tests coming to market cost up to $4,000 each. The UC Irvine team made price a key design factor of their work..The UC Irvine team developed a new type of sensor: They added nanoscale protein receptors to tiny, pencil-like viruses called phages that live only within bacteria. Double wrapping the phages with additional receptors greatly increases the capture and transmission of cancer molecule signals."
Janos Haits

AskMe - Experiment Publisher - 0 views

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    AskMe - Experiment Publisher is a simple to use software package for users to publish their large scale life science experiment data on to the web by use of data mining and visualization concepts. With use of AskMe, scientists can share these datasets easily with their collaborators or they can be made publicly accessible to the scientific community by Sciencenet - our distributed peer to peer search and share engine.
Janos Haits

Artificial Brains - The quest to build sentient machines - 0 views

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    Artificial brains are man-made machines that are just as intelligent, creative, and self-aware as humans. No such machine has yet been built, but it is only a matter of time. This website tracks the latest scientific and technological progress.
Erich Feldmeier

Christina Zielinski: With the Immune System's Weapons - 0 views

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    "When the right microorganisms are at work, immune cells involved in the development of autoimmune illnesses like psoriasis, multiple sclerosis and arthritis, can develop anti-inflammatory properties. Scientists at Charité - Universitätsmedizin Berlin and the Institute for Research in Biomedicine, Bellinzona, Switzerland, have now made this discovery. Their work is published in the current issue of the scientific journal Nature*. The scientists were able to prove that particular fungi activate the immune cells involved in the development of certain illnesses, whereas other microorganisms, in particular bacteria that are found naturally on our skin, lend an anti-inflammatory function to them. "This not only demonstrates that the composition of our microflora has a decisive role in the development of chronic illnesses, but also that the key cells causing illness can develop an anti-inflammatory 'twin'," explained Dr. Christina Zielinski, first author of the study."
Janos Haits

data.nature.com - 0 views

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    data.nature.com - the NPG Linked Data Platform The Linked Data Platform provides access to datasets from NPG published as linked data and made available through SPARQL services. The data are queryable interactively through a form interface and remotely through a service endpoint.
Erich Feldmeier

The Amygdala Made Me Do It - NYTimes.com - 0 views

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    "The 18th-century philosopher David Hume (much quoted by Mr. Lehrer) didn't have an M.R.I. scanner at his disposal, but he framed the question in much the same way. His major work, "A Treatise of Human Nature," explored the ways in which habit, or "custom," rules our lives. Hume's experiments with perception - how we respond to colors, distance, numerical sets - prefigure the rigorous science of Professor Kahneman. His intent was to show us "the natural infirmity and unsteadiness both of our imagination and senses." Consciousness, like philosophy itself, stands on a "weak foundation.""
Janos Haits

SETILive - 0 views

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    SETILive is taking the Search for Extraterrestrial Intelligence (SETI) directly to you by presenting radio frequency signals LIVE from the SETI Institute's Allen Telescope Array (ATA) while it's pointed at stars that, based on Kepler exoplanet discoveries, have the best chances of being home to an alien civilization. We'll also be putting you "in the loop" where if enough of you see a potential extraterrestrial (ET) signal in the same data, then within minutes, the ATA will be interrupted and sent back to take a second look. The data you see will be from frequencies where human-made Radio Frequency Interference (RFI) crowds them and we believe the human eye will have a better chance than SETI's computer algorithms to find ET signals there.
Janos Haits

CHB - 0 views

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    Come work with us Interested in working with researchers from different disciplines within the Harvard, MIT and Broad community and an unique opportunity to participate in world-class research to make an impact on human health? Come work with us! We are looking for a computational biologists to handle data from a wide variety of experimental methods, focusing on next-gen sequencing technologies. Keep Reading...  SCDE is live The Stem Cell Discovery Engine (SCDE) is an integrated platform that allows users to consistently describe, share and compare cancer and tissue stem cell data. It is made up of an online database of curated experiments coupled to a customized instance of the Galaxy analysis engine with tools for gene list manipulation and molecular profile comparisons. The SCDE currently contains more than 50 stem cell-related experiments. Each has been manually curated and encoded using the ISA-Tab standard to ensure the quality of the data and its annotation. Keep Reading...  The Center for Health Bioinformatics at the Harvard School of Public Health provides consults to researchers for the management, integration and contextual analysis of biological high-throughput data. We are a member of the Center for Stem Cell Bioinformatics, the Environmental Statistics and Bioinformatics Core at the Harvard NIEHS Center for Environmental Health and the Genetics & Bioinformatics Consulting group for Harvard Catalyst and work closely with our colleagues in the Department of Biostatistics and the Program in Quantitative Genomics to act as a single point of contact for computational biology,
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