Founded in 1755, the university was renamed in honor of its founder, Mikhail Lomonosov, in 1940. It also claims to have the tallest educational building in the world. Its current rector is Viktor Sadovnichiy.
A few more narrowly specialized Moscow colleges, including the Moscow Institute of Physics and Technology and the Moscow State Institute of International Relations were split off from MSU at one time or another and have since established strong reputations of their own, arguably even surpassing their parent in terms of prestige and quality of education.
The university has well-established contacts with the most distinguished universities in the world, exchanging students and lecturers with the leading international institutions of higher education. It houses the UNESCO International Demography Courses, the UNESCO Hydrology Courses, the International Biotechnology Center, the International LASER Center, courses or seminars on Russian as a foreign language. In 1991 the French University College, the Russian-American University and the Institute of German Science and Culture were opened.
The university has awarded honorary degrees to more than 60 scientists, statesmen and politicians from abroad. Many prominent university scholars and scientists in return hold honorary degrees from foreign academies and universities.
Lomonosov Moscow State University research articles from Innovation Toronto
Michigan State University (MSU) is a public research university located in East Lansing, Michigan, United States and is the first land-grant institution that was created to serve as a model for future land-grant colleges in the country under the 1862 Morrill Act.
MSU pioneered the studies of packaging, hospitality business, supply chain management, and telecommunication.
Following the introduction of the Morrill Act, the college became coeducational and expanded its curriculum beyond agriculture. Today, MSU is the ninth-largest university in the United States (in terms of enrollment), with 49,300 students (2013–14) and 2,954 faculty members.
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Michigan State University research articles from Innovation Toronto
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- Violent video games eventually lose their ability to produce guilt in gamers – April 11, 2016
- Climate-smart soils may help balance the carbon budget – April 10, 2016
- Newly Discovered Organic Nanowires Leave Manmade Technologies in Their Dust – March 24, 2016
- MSU Discovers a New Kind of Stem Cell – March 5, 2016
- Evolving Artificial Intelligence – February 8, 2016
- UMD-led study identifies the off switch for biofilm formation – August 24, 2015
- Quenching the thirst for clean, safe water – April 30, 2015
- World’s challenges demand science changes — and fast – February 27, 2015
- Some Scientists Share Better than Others – October 23, 2014
- Solar Energy That Doesn’t Block the View – October 21, 2014
- Experts close to perfect in determining truth in interrogations using active question methods – August 21, 2014
- Solar energy that doesn’t block the view – August 20, 2014
- New, fossil-fuel-free process makes biodiesel sustainable – May 21, 2014
- MSU physicists push new Parkinson’s treatment toward clinical trials | Parkinson’s treatment – April 23, 2014
- Deep Carbon Observatory scientists discover quick recipe for producing hydrogen
- What makes creativity tick?
- MSU TailBot: A Tail Assisted Running and Jumping Robot
- Microbial team turns corn stalks and leaves into better biofuel
- A new form of human-machine interfacing
- Maize Trade Disruption Could Have Global Ramifications
- Second door discovered in war against mosquito-borne diseases – not good news
- Helping pet owners make tough choices
- How Do You Feed 9 Billion People?
- Facial Recognition Technology Proves Itself
- Discovery Could Yield Treatments for Cocaine Addicts
- Unchecked Antibiotic Use in Animals May Affect Global Human Health
- Robofish Grace Glides with the Greatest of Ease
- Amazon deforestation brings loss of microbial communities
- Energy Savings – Easy as Dirt, Heat, Pressure
- World’s most efficient thermoelectric material developed
- Massive data for miniscule communities
- Letting the Cloud Watch Over the Farm
- New biofuel process dramatically improves energy recovery
- Scientists Urge New Approaches to Plant Research
- Food Sleuths: Sniffing Out Where Our Meals Are Really From
- Powerful New Approach to Attack Flu Virus
- 7 Food Ingredients Most Prone to Fraudulent Economically Motivated Food Ingredients
- US Students Need New Way of Learning Science
- Robotic fish test the waters for safety risks
- Lasers Could Be Used to Detect Roadside Bombs
- Microbes Generate Electricity While Cleaning Up Nuclear Waste
- Repellant Could Be Key to Better Controlling Destructive Invasive Species
- New Car Engine Sends Shock Waves Through Auto Industry
- Oxygen sensor invention could benefit fisheries to breweries
- Method Developed to Match Police Sketch, Mug Shot
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- Biofuel Grasslands Better for Birds Than Ethanol Staple Corn
- Breakfast Can Wait. The Day’s First Stop Is Online
MSU chemists created a material able to enhance a charge rate of li-ion batteries drastically
Nowadays Li-ion batteries power a wide range of electronic devices: mobile phones, tablets, laptops. They became popular in 90s and subsequently ousted widespread nickel-metal hydride batteries.
However, Li-ion batteries suffer a number of disadvantages. For example, their capacity may drop when temperature falls below zero. The price is also discomforting, which is mostly caused by use of expensive lithium-containing materials. For instance, Li-ion batteries make about half a price of a popular electro car Tesla Model S. On the other hand, Li-ion batteries are compact, easy to use and highly capacious, which means that your device would live long having a relatively small battery.
A key element of the Li-ion batteries limiting its capacity is a material used for its cathode. For the majority of the materials their capacity limit has already been reached. Hence, scientists and engineers are actively searching for new cathode materials capable of recharging completely within minutes, operate under high current densities, and store more energy.
One of the most prospective classes of cathode materials for a new generation of Li-ion batteries are fluoride-phosphates of transition metals.
The work directed by Prof. Evgeny Antipov (correspondent member of the Russian Academy of Sciences and the head of the MSU Electrochemistry Department) was carried out by a team of MSU research scientists together with their Russian and Belgian colleagues. It was devoted to creation of a new high-power cathode material based on a fluoride-phosphate of vanadium and potassium for Li-ion batteries. The results were published in Chemistry of Materials(current IF — 8.354)
‘The work is based on a simple idea of geometric and crystal-chemical conformity of ionic sublattices,’ — says Stanislav Fedotov, one of the authors, junior research scientist at Electrochemistry Department, Faculty of Chemistry, MSU.
The scientists succeeded to stabilize a unique crystal structure, which provides a fast transport of lithium ions through spatial cavities and channels. Consequently, the suggested cathode material demonstrated high charge/discharge rates (down to 90 seconds) retaining more than 75% of an initial specific capacity. With its morphology and composition optimized, this material may become a serious contender to such well-known and commercialized high-power cathode materials as NaSICON.
According to the authors, the results of the presented work may not only open up ample opportunities in searching and further synthesis of new cathode materials for Li-ion batteries, but also promote the development of a new battery type where a role of a mobile ion (a charge carrier) would be performed by potassium ions instead of lithium.
‘It is assumed that such batteries would not only deliver high energy density, but would also be economically attractive due to a replacement of expensive lithium-containing components with cheaper and hence affordable potassium-containing analogues’ — explains Stanislav Fedotov.
Learn more: New material to enhance battery life
The Mississippi State University of Agriculture and Applied Science, commonly known as Mississippi State University (MSU), is a land-grant university located in Oktibbeha County, Mississippi, United States, partially in the town of Starkville and partially in an unincorporated area.
Mississippi State, Mississippi, is the official designation for the area that encompasses the university.
It is classified as a “comprehensive doctoral research university with very high research activity” by the Carnegie Foundation. The university has campuses in Starkville (main), Meridian, Biloxi, and Vicksburg, Mississippi.
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Mississippi State University (MSU) research articles from Innovation Toronto
Missouri State University (MSU or Mo State formerly Southwest Missouri State University) is a public university located in Springfield, Missouri, United States and founded in 1905.
It is the state’s second largest university, with an official enrollment of 21,059 in the Fall 2012 semester. In 2011 students represented 50 states, the District of Columbia, the Virgin Islands, and 83 countries. The Springfield campus is one of two degree granting institutions within the Missouri State University System, the other being a two-year campus in West Plains, Missouri.
A bachelor of science in business from MSU is offered at the Missouri State University Branch Campus Dalian in the People’s Republic of China. In addition to its main campus, MSU maintains a fruit research station in Mountain Grove and the Department of Defense and Strategic Studies program housed in Fairfax, Virginia. The school is classified by the Carnegie foundation as one of six master’s colleges and universities in Missouri. The school was ranked 53rd of the Midwestern regional universities by the 2012 U.S. News and World Report. In this category, MSU is the second highest ranked public school in Missouri and fifth overall for undergraduates.