Today LGBTI Talent show 2010 was successfully done. Lots of crowds in Kanti Sabhagriha hall. Good performance by participants. Great Dances By Binita, Riya, students and some more LGBTI members from different districts.
Among 16 participants Abantika won the competition. Abantika got award and prizes from FPAN, Lovingnepal.com, And beautician.
There were more then 400 audience.
Organizers are specially thankful to co-sponsors, Bds, Lovingnepal.com, Choreographers, Dancers, audience, And all participants.
Friday, December 10, 2010
Thursday, December 9, 2010
Wednesday, December 8, 2010
Science Exhibition 2010 By Rsc ( Rupandehi Student Council)
Rupandehi Student Council is organizing Science Exhibition 2010 in Oxford higher secondary school , Sukhanagar, Butwal, Nepal. This program is of 3 days starting from 23 to 25th. Rally was succesfully done today (22th of mangsir). Different science projects will be demonstrated in this 3 days program. Many of the colleges, students will be taking part in it. There will be various activities like dance etc throughout the program..
If You are interested to visit then please visit oxford higher secondary school, Sukhanagar Butwal.
If You are interested to visit then please visit oxford higher secondary school, Sukhanagar Butwal.
Many updates regarding Science Exhibition 2010 will be posting to our website throughout program. You can even view event photos from our gallery zone.
Thank you.
Saturday, December 4, 2010
LGBTI Talent Show By FPAN
FPAN ( Family Planning Association Of Nepal) Is organizing The talent show of LGBTI (lesbians Gays Bisexual Transgender Intersexual) . This program will be conducted in Kanti sabhagriya hall in 24th of Mangsir. In This program there will be 16 members of LGBTI. Interested peoples can collect tickets from FPAN office and members. Following listed members are the participants:
- Binod Sunar
- Janga Bahadur Rana
- Subash Dhadi
- Suman Chepang
- Santa Pun
- Ruma Ale
- Avantika Gharti
- Rojina Gurung
- Uday Thapa
- Simran Pandey
- Kiran Kunwar
- Jhinki Fahar
Organizer: FPAN ( Family Planning Association Of Nepal)
Web/media Partner: Lovingnepal.com
Choreography : Lovingnepal.com choreographer (Nav Malla), Anik Rana
Photography: Lovingnepal.com ( Nav Malla)
You can view/download/share this events photos from our Events Photos or our gallery pages under LGBTI By FPAN.
Click here to see photos
- Binod Sunar
- Janga Bahadur Rana
- Subash Dhadi
- Suman Chepang
- Santa Pun
- Ruma Ale
- Avantika Gharti
- Rojina Gurung
- Uday Thapa
- Simran Pandey
- Kiran Kunwar
- Jhinki Fahar
Organizer: FPAN ( Family Planning Association Of Nepal)
Web/media Partner: Lovingnepal.com
Choreography : Lovingnepal.com choreographer (Nav Malla), Anik Rana
Photography: Lovingnepal.com ( Nav Malla)
You can view/download/share this events photos from our Events Photos or our gallery pages under LGBTI By FPAN.
Click here to see photos
Wednesday, December 1, 2010
Unsatisfied selection, Long live politics
This news is posted on the request of few participants and isn't related to lovingnepal.com and news team.
The above quoted text are copied from the article that user submitted. We found it intresting and pasted. Nothing offensive.
The selection of u-19 held in Rupandehi for the district team is not satisfied at all, The selection committee has selected the few players under the source of politicians. This shows the undergoing of Rupandehi cricket team. Also we cant neglect that future cricket wont be of good quality.
The above quoted text are copied from the article that user submitted. We found it intresting and pasted. Nothing offensive.
Sunday, November 28, 2010
Earth Observing-1: Ten Years of Innovation
"Earth-Observing-1 has had three missions," says mission manager Dan Mandl of NASA’s Goddard Space Flight Center in Greenbelt, Md. Its original mission was to test new technologies, a mission completed in the first year. Its second mission was to provide images and data. Its third mission was to test new cost-saving software that operates the satellite semi-autonomously and allows users to target the sensors.
All of the missions come down to one thing: "We're the satellite people can try things on." Mandl calls EO-1 NASA's on-orbit test bed, and the name rings true.
Testing New Technology: Faster, Better, Cheaper
EO-1 was commissioned as part of NASA's New Millennium Program, set up to develop and fly technology that would reduce the risk and cost of future science missions. In short, NASA told its engineers: find a way to fly faster, better, and cheaper.
"EO-1's primary purpose was to demonstrate that the Advanced Land Imager (ALI) was a suitable follow-on instrument for Landsat," says Bryant Cramer, the program manager at Goddard during EO-1's development and launch. Like Landsat-7, ALI records seven wavelengths of light reflected from Earth's surface. ALI also records an additional two wavelengths to improve measurements of forests and crops, coastal waters, and aerosols.
Later, an innovative new instrument, the Hyperion imaging spectrometer, was added to the mission. Hyperion records more than 200 adjacent wavelengths of light to even better understand the makeup of Earth's surface.
"EO-1 succeeded beyond anyone's expectations," says former project scientist Steve Ungar of NASA Goddard. He credits the mission's success to EO-1's "crackerjack team" of engineers and scientists, who were drawn to the mission because they recognized that they could have a stake in the future of satellite technology.
Hyperion
"Hyperion is probably the future of remote sensing," says Cramer. Hyperion is a hyperspectral instrument, a change in technology that is like going from black-and-white to color television, Mandl adds.
Other remote sensing instruments—multispectrometers—measure discreet wavelengths of light. It is as if your eyes could only see red and blue light; you could tell much about the world based on how much red and how much blue you saw, but your vision would have gaps in the green tones. A hyperspectral instrument corrects this color blindness by measuring many more wavelengths of light.
The science behind the hyperspectral instrument is spectroscopy, says current EO-1 project scientist, Elizabeth Middleton of NASA Goddard. "Spectroscopy is the study of constituents of materials using specific wavelengths," she notes. "Hyperion measures the chemical constituents of Earth's surface."
Space-based imaging spectroscopy enables a wide range of science, including tracking the amount of carbon plants take out of the atmosphere everywhere from the Amazon Rainforest to the Alaskan tundra. It also has been used to find evidence of microbial life in the Arctic and to monitor volcanic activity.
Perhaps the most important thing Hyperion has done, says Middleton, is teach the community how to work with complex hyperspectral data. Germany will soon launch the next hyperspectral instrument, EnMap, followed by NASA's HyspIRI satellite, which is still in the planning stage. Both missions build on lessons learned from Hyperion.
Advanced Land Imager
The Advanced Land Imager (ALI) was built, says Cramer, to test new technology and to provide a safe technology shift for future Landsat missions. The Landsat series of satellites has provided a continuous record of changes in Earth's landscape from 1972 to the present.
ALI differs from previous Landsat sensors because of how it takes images. Previous Landsat instruments scanned from side to side, like a whiskbroom. The image is built from horizontal strips of information. ALI, on the other hand, is more like a push broom. It has detectors arranged parallel to one another and facing forward, and they collect information in vertical strips. This arrangement eliminates the need for the sensor optics to move from side to side, and fewer moving parts means less chance of failure, says EO-1 engineer Stuart Frye of NASA Goddard.
After ten years of operation, ALI has proven that the push-broom technology is stable and reliable enough that the next Landsat satellite uses the same design. "The Landsat community is treating push-broom sensors like we've been building them for years," says Cramer. "That's a tribute to EO-1."
NASA's On-orbit test bed
As the EO-1 mission has aged, perhaps the most critical innovation has come from the onboard computer. "EO-1 has two separate computer processors with 256 megabytes of extra memory each," says Mandl. "It meant we had excess capacity to try new things."
The first new software loaded onto EO-1 was the Autonomous Science Experiment, an onboard intelligent scheduling tool that allows the satellite to decide for itself which images Hyperion and ALI should take. The on-board scheduler prioritizes requests based on what they are for (ranked by theme) and the weather.
"It's a customer-driven method of running a mission," says Mandl. Anyone from an archeologist to a disaster response agency can request images. "Flying a mission with a customizable user experience is one of EO-1's greatest achievement."
Sometimes the "customers" targeting EO-1 are other satellites. As part of SensorWeb, EO-1 automatically acquires images that are triggered by other satellites. For example, EO-1 monitors 100 volcanoes. When another satellite detects a hot spot at any of them, EO-1 automatically acquires an image on its next overpass. Hyperion records the temperature and position of lava flows, while ALI tracks ash plumes.
SensorWeb and the scheduling tool have saved money. "Initially, we were spending about $7,500 per image to acquire them. Now the cost is less than $600 a scene," says Cramer.
"EO-1 is one of the cheapest of NASA's Earth missions," confirms Middleton. These cost savings mean that anyone can now target EO-1 and access all data free of charge, making it useful to a growing range of people.
"EO-1 has done so many different things, NASA got three or four missions for the price of one," says Cramer. "We achieved all of the things that we hoped for and then some."
Online Atlas Shows Climate Change Impact on Forest Distribution Patterns in Iberian Peninsula
ScienceDaily — Researchers from Universitat Autònoma de Barcelona (UAB) and CREAF have developed the Suitability Atlas of Woody Plants of the Iberian Peninsula, a series of digital maps available online which for the first time reveal the present and future degree of adaptation to climate conditions of the main plant species found in the forests throughout the Iberian Peninsula. Data shows the tendency of forests to move higher in altitude and migrate towards the north.
Today, territory and species conservation managers need to rely on data and empirical methods on which to base their protection policies. Within the context of Global Change, the maps offered can be useful to evaluate possible changes in the distribution of forests in the future, which could lead to an in depth study of mitigation and/or adaptation tools needed to face these changes.
Until now, a few maps had been drawn for specific woody plants or for partial areas of the peninsula. The Suitability Atlas of Woody Plants however offers a global view of the Iberian Peninsula. The series of maps were created to determine the degree of suitability to climate and/or topographic conditions of the forests' main woody plants. With the help of these maps one can verify, in an area of 200 metres, the topo-climatic suitability of the Iberian Peninsula. In addition, these values can be consulted for the current climatic scenario (1950-1998) and for future projections proposed by one of the foremost research centres dedicated to climate change, the Hadley Centre, located in Exeter, UK.
The Atlas combines advanced methodologies and technologies such as Geographic Information Systems, multivariate statistics and interoperable geoportals to offer both rigorous cartographic standards and information that can be consulted by the general public.
The Atlas was developed by a group of researchers from the UAB Department of Animal Biology, Plant Biology and Ecology, in collaboration with the Centre for Ecological Research and Forestry Applications (CREAF), under the framework of the R&D&I National Plan.
Main features of the Atlas
* Completeness: covering almost all woody species found in forests
* Quality initial data: both the Digital Climate Atlas of the Iberian Peninsula (ACDPI) and the third National Forest Inventory are cartography databases with high spatial resolution and with proven data quality.
* Detailed resolution: 200 m spatial resolution
* Objectivity: numerical quality (known level of error) calculated and documented for each map.
* Interoperability: format in which maps can be viewed allows users to contrast information with other map databases
* Accessibility: maps can be consulted online in GIS format without the need of additional installations.
First results
Researchers have already obtained the first scientific results with the help of Atlas data. They were able to verify that many species could be affected by the reduction in suitability in the regions they currently inhabit. They detected a tendency in forests to migrate towards higher altitudes and more northern latitudes. In this sense, mountain ranges such as the Pyrenees are seen as important protection areas of biodiversity within the context of Climate Change.
Nevertheless, not all species react the same when suffering the consequences of climate change. Species such as aleppo pine, stone pine, or holm oak are more resistant and may even occupy larger areas in the future. In contrast, species such as scots pine or beech are more affected by rising temperatures and longer dry periods and therefore the space they occupy may begin to decrease.
At these moments researchers are studying the total forest surface which could be lost or substituted by scrubs, as well as interactions between forest species when their area of distribution is modified. The fact that forest surfaces are decreasing is of great relevance, since this represents a reduction in CO2 consumption, an increase in the risk of land erosion and modifications in water cycles.
Today, territory and species conservation managers need to rely on data and empirical methods on which to base their protection policies. Within the context of Global Change, the maps offered can be useful to evaluate possible changes in the distribution of forests in the future, which could lead to an in depth study of mitigation and/or adaptation tools needed to face these changes.
Until now, a few maps had been drawn for specific woody plants or for partial areas of the peninsula. The Suitability Atlas of Woody Plants however offers a global view of the Iberian Peninsula. The series of maps were created to determine the degree of suitability to climate and/or topographic conditions of the forests' main woody plants. With the help of these maps one can verify, in an area of 200 metres, the topo-climatic suitability of the Iberian Peninsula. In addition, these values can be consulted for the current climatic scenario (1950-1998) and for future projections proposed by one of the foremost research centres dedicated to climate change, the Hadley Centre, located in Exeter, UK.
The Atlas combines advanced methodologies and technologies such as Geographic Information Systems, multivariate statistics and interoperable geoportals to offer both rigorous cartographic standards and information that can be consulted by the general public.
The Atlas was developed by a group of researchers from the UAB Department of Animal Biology, Plant Biology and Ecology, in collaboration with the Centre for Ecological Research and Forestry Applications (CREAF), under the framework of the R&D&I National Plan.
Main features of the Atlas
* Completeness: covering almost all woody species found in forests
* Quality initial data: both the Digital Climate Atlas of the Iberian Peninsula (ACDPI) and the third National Forest Inventory are cartography databases with high spatial resolution and with proven data quality.
* Detailed resolution: 200 m spatial resolution
* Objectivity: numerical quality (known level of error) calculated and documented for each map.
* Interoperability: format in which maps can be viewed allows users to contrast information with other map databases
* Accessibility: maps can be consulted online in GIS format without the need of additional installations.
First results
Researchers have already obtained the first scientific results with the help of Atlas data. They were able to verify that many species could be affected by the reduction in suitability in the regions they currently inhabit. They detected a tendency in forests to migrate towards higher altitudes and more northern latitudes. In this sense, mountain ranges such as the Pyrenees are seen as important protection areas of biodiversity within the context of Climate Change.
Nevertheless, not all species react the same when suffering the consequences of climate change. Species such as aleppo pine, stone pine, or holm oak are more resistant and may even occupy larger areas in the future. In contrast, species such as scots pine or beech are more affected by rising temperatures and longer dry periods and therefore the space they occupy may begin to decrease.
At these moments researchers are studying the total forest surface which could be lost or substituted by scrubs, as well as interactions between forest species when their area of distribution is modified. The fact that forest surfaces are decreasing is of great relevance, since this represents a reduction in CO2 consumption, an increase in the risk of land erosion and modifications in water cycles.
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