Showing posts with label School. Show all posts
Showing posts with label School. Show all posts

Higher Secondary Result 2011: Kerala Results Plus One 2011 Announced | Plus One Result 2011 Kerala, Plus Two Results 2011 Kerala, DHSE Kerala, DHSE Plus One Result 2011, Kerala Results


As of Thursday, the higher secondary result 2011 has been announced for the Kerala Plus One 2011 exam. Currently, the Kerala region is considered the most literate region in all of India, making education an extremely important facet of the area. The Plus One results for 2011 will be something many students look at for improvement in their educational careers.

The good news is the results are in! A report at NowPublic.com says as of Thursday, students can get results for secondary plus one results. To obtain the higher secondary exam results for first year 2011, students can check out the official website. By entering a roll number and clicking "submit" students can obtain their latest school test results.

This is likely a tense time for students in areas under the government of Kerala. The government of Kerala, private trusts and individuals run the schools and colleges of the regions. Students will be helping for good marks on the exams so they can continue with further educational and career aspirations. Best of luck to all of those as they embark on their futures and may today's results be satisfactory. Read More

Higher Secondary Result 2011: Kerala Results Plus One 2011 Announced | Plus One Result 2011 Kerala, Plus Two Results 2011 Kerala, DHSE Kerala, DHSE Plus One Result 2011, Kerala Results


As of Thursday, the higher secondary result 2011 has been announced for the Kerala Plus One 2011 exam. Currently, the Kerala region is considered the most literate region in all of India, making education an extremely important facet of the area. The Plus One results for 2011 will be something many students look at for improvement in their educational careers.

The good news is the results are in! A report at NowPublic.com says as of Thursday, students can get results for secondary plus one results. To obtain the higher secondary exam results for first year 2011, students can check out the official website. By entering a roll number and clicking "submit" students can obtain their latest school test results.

This is likely a tense time for students in areas under the government of Kerala. The government of Kerala, private trusts and individuals run the schools and colleges of the regions. Students will be helping for good marks on the exams so they can continue with further educational and career aspirations. Best of luck to all of those as they embark on their futures and may today's results be satisfactory. Read More

CBSE students caught between school and board examinations | Ctet 2011 Result, Ctet Result, Ctet Result 2011, Ctet, Cbse Ctet Result


Class X students of Central Board of Secondary Education (CBSE) board are left with two options: school-based exams and board-based exams. With the final examinations fast approaching, students are still mulling over which one to opt for.

“The numbers of those taking the school exams are steadily rising. However, in my opinion, taking the board exam allows a student to keep his options open, especially if they haven't decided if they want to continue in the same school or shift boards,” said Mansoor Ali Khan,general secretary, Management of Independent CBSE Schools Association and secretary, Delhi Public School.

He added that the number of students taking the school-based exam has increased as compared to the previous year.

The role of parents plays a crucial role in deciding what the students should opt for.

“Such a decision should be taken in conjunction with parents because the students are too young to take such a decision themselves,” he said.

Venkat International Public School, for instance, advise their students to take up the board exam regardless of the choice.

“Even though, there is no difference in terms of preparation, students and teachers feel that board exams are more secure. Moreover, in a board exam, students need not feel that there is some sort of partiality being shown, since it is evaluated externally,” said school chairman, T Balakrishna. Read More

CBSE students caught between school and board examinations | Ctet 2011 Result, Ctet Result, Ctet Result 2011, Ctet, Cbse Ctet Result


Class X students of Central Board of Secondary Education (CBSE) board are left with two options: school-based exams and board-based exams. With the final examinations fast approaching, students are still mulling over which one to opt for.

“The numbers of those taking the school exams are steadily rising. However, in my opinion, taking the board exam allows a student to keep his options open, especially if they haven't decided if they want to continue in the same school or shift boards,” said Mansoor Ali Khan,general secretary, Management of Independent CBSE Schools Association and secretary, Delhi Public School.

He added that the number of students taking the school-based exam has increased as compared to the previous year.

The role of parents plays a crucial role in deciding what the students should opt for.

“Such a decision should be taken in conjunction with parents because the students are too young to take such a decision themselves,” he said.

Venkat International Public School, for instance, advise their students to take up the board exam regardless of the choice.

“Even though, there is no difference in terms of preparation, students and teachers feel that board exams are more secure. Moreover, in a board exam, students need not feel that there is some sort of partiality being shown, since it is evaluated externally,” said school chairman, T Balakrishna. Read More

Spatial Thinking in the Geosciences | Research on Learning:Synthesis Study


Spatial thinking is thinking that finds meaning in the shape, size, orientation, location, direction or trajectory, of objects, processes or phenomena, or the relative positions in space of multiple objects, processes or phenomena. Spatial thinking uses the properties of space as a vehicle for structuring problems, for finding answers, and for expressing solutions (National Research Council, 2006).

Geoscience demands extensive spatial thinking from learners and practitioners (National Research Council, 2006; Kastens & Ishikawa, 2006). Geoscientists describe, and classify, and look for causal meaning in the shape of myriad objects in nature, inferring strain history from the shape of a mineral, temperature of an ancient ocean from the shape of a marine microfossil, and atmospheric conditions from the shape of a cloud. Students must master a variety of spatial representations, beginning with maps, cross-sections, and block diagrams, and moving on to unfamiliar specialized representations such as those showing directions of earthquake first motion, or the temperature/salinity structure of an oceanic water mass. Most geoscience data are collected in one or two dimensions; for example, seawater temperature is recorded by an instrument lowered on a wire from a research vessel (a 1-D data type). Students need to learn to combine data from 1- or 2-D information sources into a 3-D mental model of earth phenomena.

With respect to spatial thinking in the geosciences, we wish to know:
  • How do students learn to recognize which features in the shape or configuration of natural objects have significance, and how can educators foster that learning process?
  • How do people combine information gathered from multiple viewpoints into a single integrated mental model of the three-dimensional object or process, and how can that inherent human ability be harnessed to help students interpret 1-D or 2-D data sets in terms of 3-D processes?
  • To understand specialized spatial representations, such as phase diagrams of mineral stability fields or stereonet representations of folded rocks, the student needs to understand the process or structure being depicted. However, the means by which the process is best depicted is that same unfamiliar diagram. How can the learner break into this cycle, in which the process is conveyed through the representation, but the representation can't be deciphered without understanding the process?
  • To what extent do people who chose careers in geoscience self-select for high spatial skills, and to what extent does practice with geoscience tasks improve spatial thinking (Baldwin & Hall, 2002; Piburn et al., 2002)?
  • What teaching strategies are most effective for helping students with weaker spatial abilities understand geoscience concepts and master geoscience skills? If, as some research has found (National Research Council, 2006), spatial abilities differ by gender, finding answers to this question may help to increase the representation of women in the geoscience educational pipeline and workforce.

Research on specific courses and curricula has shown that performance on spatially-demanding tasks is resistant to change through geoscience education (e.g. Saliero, et al., 2005, demanding concerning causes of the seasons), and such tasks are ranked by many students as the most difficult in the geoscience curriculum (e.g. Hemler and Repine, 2006, concerning measurement of strike and dip). Recent studies have begun to tease out the nature of these difficulties. For example, Kali and Orion (1996) tested students' ability to envision the unviewed sides of a 3-D geological block diagram. They documented a category of profound "non-penetrative errors," in which students apparently failed to realize that the inside of the block would not be the same as the viewed surfaces. Through use of a survey instrument designed to probe students' conceptions about ground water, Dickerson, et al. (2005) found that misconceptions were often rooted in misunderstandings of scale or size.


References Cited
Baldwin, T. K. and M. Hall-Wallace (2002). Measuring spatial abilities of students introductory geoscience courses. Geological Society of America Abstracts with Program, Abstract 132-111.

Dickerson, D., Callahan, T. J., Van Sickle, M., & Hay, G. (2005). Students' Conceptions of Scale Regarding Groundwater. Journal of Geoscience Education, 53, 374-380.

Hemler, D. and T. Repine (2006). Teachers doing science: An authentic geology research experience for teachers. Journal of Geoscience Education, 54, 93-102.

Kali, Y. and Orion, N. (1996). Spatial abilities of high-school students in the perception of geologic structures. Journal of Research in Science Teaching, 33, 369-391.

Kastens, K.A. and T. Ishikawa (2006). Spatial Thinking in Geosciences and Cognitive Sciences, in C. Manduca and D. Mogk (Eds.), Earth & Mind: How Geoscientists Think and Learn about the Earth Earth. Geological Society of America Special Publication 413

National Research Council. (2006). Learning to Think Spatially Spatially. Washington, D.C.: National Academies Press.

Piburn, M., Reynolds, S. J., Leedy, D. E., McAuliffe, C. M., Birk, J. P., & Johnson, J. K. (2002). The Hidden Earth: Visualization of Geologic Features and their Subsurface Geometry. Paper presented at the National Association for Research in Science Teaching, New Orleans, LA.

Salierno, C., Edelson, D., and Sherin, B. (2005). The Development of Student Conceptions of the Earth-Sun Relationship in an Inquiry-Based Curriculum. Journal of Geoscience Education, 53(4), 422-431.

Spatial Thinking in the Geosciences | Research on Learning:Synthesis Study


Spatial thinking is thinking that finds meaning in the shape, size, orientation, location, direction or trajectory, of objects, processes or phenomena, or the relative positions in space of multiple objects, processes or phenomena. Spatial thinking uses the properties of space as a vehicle for structuring problems, for finding answers, and for expressing solutions (National Research Council, 2006).

Geoscience demands extensive spatial thinking from learners and practitioners (National Research Council, 2006; Kastens & Ishikawa, 2006). Geoscientists describe, and classify, and look for causal meaning in the shape of myriad objects in nature, inferring strain history from the shape of a mineral, temperature of an ancient ocean from the shape of a marine microfossil, and atmospheric conditions from the shape of a cloud. Students must master a variety of spatial representations, beginning with maps, cross-sections, and block diagrams, and moving on to unfamiliar specialized representations such as those showing directions of earthquake first motion, or the temperature/salinity structure of an oceanic water mass. Most geoscience data are collected in one or two dimensions; for example, seawater temperature is recorded by an instrument lowered on a wire from a research vessel (a 1-D data type). Students need to learn to combine data from 1- or 2-D information sources into a 3-D mental model of earth phenomena.

With respect to spatial thinking in the geosciences, we wish to know:
  • How do students learn to recognize which features in the shape or configuration of natural objects have significance, and how can educators foster that learning process?
  • How do people combine information gathered from multiple viewpoints into a single integrated mental model of the three-dimensional object or process, and how can that inherent human ability be harnessed to help students interpret 1-D or 2-D data sets in terms of 3-D processes?
  • To understand specialized spatial representations, such as phase diagrams of mineral stability fields or stereonet representations of folded rocks, the student needs to understand the process or structure being depicted. However, the means by which the process is best depicted is that same unfamiliar diagram. How can the learner break into this cycle, in which the process is conveyed through the representation, but the representation can't be deciphered without understanding the process?
  • To what extent do people who chose careers in geoscience self-select for high spatial skills, and to what extent does practice with geoscience tasks improve spatial thinking (Baldwin & Hall, 2002; Piburn et al., 2002)?
  • What teaching strategies are most effective for helping students with weaker spatial abilities understand geoscience concepts and master geoscience skills? If, as some research has found (National Research Council, 2006), spatial abilities differ by gender, finding answers to this question may help to increase the representation of women in the geoscience educational pipeline and workforce.

Research on specific courses and curricula has shown that performance on spatially-demanding tasks is resistant to change through geoscience education (e.g. Saliero, et al., 2005, demanding concerning causes of the seasons), and such tasks are ranked by many students as the most difficult in the geoscience curriculum (e.g. Hemler and Repine, 2006, concerning measurement of strike and dip). Recent studies have begun to tease out the nature of these difficulties. For example, Kali and Orion (1996) tested students' ability to envision the unviewed sides of a 3-D geological block diagram. They documented a category of profound "non-penetrative errors," in which students apparently failed to realize that the inside of the block would not be the same as the viewed surfaces. Through use of a survey instrument designed to probe students' conceptions about ground water, Dickerson, et al. (2005) found that misconceptions were often rooted in misunderstandings of scale or size.


References Cited
Baldwin, T. K. and M. Hall-Wallace (2002). Measuring spatial abilities of students introductory geoscience courses. Geological Society of America Abstracts with Program, Abstract 132-111.

Dickerson, D., Callahan, T. J., Van Sickle, M., & Hay, G. (2005). Students' Conceptions of Scale Regarding Groundwater. Journal of Geoscience Education, 53, 374-380.

Hemler, D. and T. Repine (2006). Teachers doing science: An authentic geology research experience for teachers. Journal of Geoscience Education, 54, 93-102.

Kali, Y. and Orion, N. (1996). Spatial abilities of high-school students in the perception of geologic structures. Journal of Research in Science Teaching, 33, 369-391.

Kastens, K.A. and T. Ishikawa (2006). Spatial Thinking in Geosciences and Cognitive Sciences, in C. Manduca and D. Mogk (Eds.), Earth & Mind: How Geoscientists Think and Learn about the Earth Earth. Geological Society of America Special Publication 413

National Research Council. (2006). Learning to Think Spatially Spatially. Washington, D.C.: National Academies Press.

Piburn, M., Reynolds, S. J., Leedy, D. E., McAuliffe, C. M., Birk, J. P., & Johnson, J. K. (2002). The Hidden Earth: Visualization of Geologic Features and their Subsurface Geometry. Paper presented at the National Association for Research in Science Teaching, New Orleans, LA.

Salierno, C., Edelson, D., and Sherin, B. (2005). The Development of Student Conceptions of the Earth-Sun Relationship in an Inquiry-Based Curriculum. Journal of Geoscience Education, 53(4), 422-431.

Spatial Thinking | Dictionary Australia, Dictionary For Kids, Dictionary Oxford, Directory, Formal Letters


The children whom I see once-a-week in an hour-long afternoon science enrichment class show growth in their exploration of building using ramps and blocks to create pathways for balls. These materials have been available each session for about four months. An hour once a week is not much time to explore a set of materials but the children seem to be able to pick up where they left off the last time. They enjoy making the balls go into a goal, creating elaborate structures around a few ramps, and making especially long ramps. Children drawing a set-up of blocks.Their work had seemed stalled so I assigned a task before building. I wanted to see how the children, ages 3.5-5, would approach the difficult task of drawing the relationship between two 3-D objects so I asked them to make a set-up with any two wooden (unit) building blocks and draw a picture of it. Most of the children made simple line drawings of one face of the blocks with varying degrees of accuracy (some were more oval than rectangular), and a few children traced the shapes. I hoped that this practice drawing would help them begin to think of how 3-D objects can be placed together and that thinking before building might lead to new structures.

(Note: In talking with the children I was searching my brain for the name given to the rectangular block and couldn’t come up with it. Not a cube but a ________. An online resource, The Annenberg Foundation’s Interactives: Geometry 3-D Shapes, gave me the word I was looking for. These unit blocks are polyhedrons, 3-D shapes whose faces are polygons, and specifically right prism polyhedron because the opposite sides are equal and they meet at right angles. The general term “rectangular prism” is appropriate. The site has a cool section where these shapes are shown unfolded.)

Nora S. Newcombe’s article in the Summer 2010 American Educator, Picture This: Increasing Math And Science Learning By Improving Spatial Thinking, has a fascinating discussion about spatial thinking skills and how to improve spatial thinking with some simple techniques. Newcombe asks, “Since spatial thinking is associated with skill and interest in STEM fields (as well as in other areas, such as art, graphic design, and architecture), the immediate question is whether it can be improved. Can we educate children in a way that would maximize their potential in this domain?” “In addition to practicing spatial thinking tasks like those shown in the box on page 30, well-conceived symbolic representations, analogies, and gestures are also effective in improving one’s spatial thinking ability.” She describes a study that shows that parents using spatial words like outside, inside, under, over, around, and corner help preschoolers improve their spatial thinking. Although “precise answers are not yet possible,” Newcombe says, “However, we are beginning to have some good ideas about where to start, especially with preschool and elementary students.”

Last week I challenged the children to first draw a ramp set-up that included at least two ramps and two blocks, and then build it. There were also sponges and plastic quart containers available. The children got to work drawing, some rushing to finish and some working more methodically. As they finished, they picked out materials and began building. Most of the 14 children referred to their drawings as they built, whether or not the structure closely matched the drawing.

One child announced that, “Mine’s not working!” I asked the group, What should he do?” and they responded, “Make a new plan!” He did. He went back to the table, re-drew his plan and then built a revised structure (which he was happy with) and continued working with for another 30 minutes. Two of the youngest children did not wander as they often did but spent the time engaged with building and ball-rolling. Another child had drawn a bridge-like structure with an up-ramp, level section, and a down-ramp. He tried to build it but could not get it to stay up. When I asked him what he wanted to do, he pointed to his plan indicating where he needed two supporting blocks. With a marker he drew in the supports, and then got two blocks to successfully build the revised structure.

To learn the most out of this activity, the children need time to investigate the relationship between the blocks, the slope of the ramps and the size and weight of the balls. They need time to play—did the ball make it into the hole?, time to compare—the heavy ball bumped off the path here but the light one kept going, time to think and talk about why, and time to revise their structures—“I’m going to make it better this time!” By designing, discussing their ideas, building, and revising their designs, I hope the children will gain experience with physical science concepts of force and motion while developing their spatial thinking. READ MORE

Spatial Thinking | Dictionary Australia, Dictionary For Kids, Dictionary Oxford, Directory, Formal Letters


The children whom I see once-a-week in an hour-long afternoon science enrichment class show growth in their exploration of building using ramps and blocks to create pathways for balls. These materials have been available each session for about four months. An hour once a week is not much time to explore a set of materials but the children seem to be able to pick up where they left off the last time. They enjoy making the balls go into a goal, creating elaborate structures around a few ramps, and making especially long ramps. Children drawing a set-up of blocks.Their work had seemed stalled so I assigned a task before building. I wanted to see how the children, ages 3.5-5, would approach the difficult task of drawing the relationship between two 3-D objects so I asked them to make a set-up with any two wooden (unit) building blocks and draw a picture of it. Most of the children made simple line drawings of one face of the blocks with varying degrees of accuracy (some were more oval than rectangular), and a few children traced the shapes. I hoped that this practice drawing would help them begin to think of how 3-D objects can be placed together and that thinking before building might lead to new structures.

(Note: In talking with the children I was searching my brain for the name given to the rectangular block and couldn’t come up with it. Not a cube but a ________. An online resource, The Annenberg Foundation’s Interactives: Geometry 3-D Shapes, gave me the word I was looking for. These unit blocks are polyhedrons, 3-D shapes whose faces are polygons, and specifically right prism polyhedron because the opposite sides are equal and they meet at right angles. The general term “rectangular prism” is appropriate. The site has a cool section where these shapes are shown unfolded.)

Nora S. Newcombe’s article in the Summer 2010 American Educator, Picture This: Increasing Math And Science Learning By Improving Spatial Thinking, has a fascinating discussion about spatial thinking skills and how to improve spatial thinking with some simple techniques. Newcombe asks, “Since spatial thinking is associated with skill and interest in STEM fields (as well as in other areas, such as art, graphic design, and architecture), the immediate question is whether it can be improved. Can we educate children in a way that would maximize their potential in this domain?” “In addition to practicing spatial thinking tasks like those shown in the box on page 30, well-conceived symbolic representations, analogies, and gestures are also effective in improving one’s spatial thinking ability.” She describes a study that shows that parents using spatial words like outside, inside, under, over, around, and corner help preschoolers improve their spatial thinking. Although “precise answers are not yet possible,” Newcombe says, “However, we are beginning to have some good ideas about where to start, especially with preschool and elementary students.”

Last week I challenged the children to first draw a ramp set-up that included at least two ramps and two blocks, and then build it. There were also sponges and plastic quart containers available. The children got to work drawing, some rushing to finish and some working more methodically. As they finished, they picked out materials and began building. Most of the 14 children referred to their drawings as they built, whether or not the structure closely matched the drawing.

One child announced that, “Mine’s not working!” I asked the group, What should he do?” and they responded, “Make a new plan!” He did. He went back to the table, re-drew his plan and then built a revised structure (which he was happy with) and continued working with for another 30 minutes. Two of the youngest children did not wander as they often did but spent the time engaged with building and ball-rolling. Another child had drawn a bridge-like structure with an up-ramp, level section, and a down-ramp. He tried to build it but could not get it to stay up. When I asked him what he wanted to do, he pointed to his plan indicating where he needed two supporting blocks. With a marker he drew in the supports, and then got two blocks to successfully build the revised structure.

To learn the most out of this activity, the children need time to investigate the relationship between the blocks, the slope of the ramps and the size and weight of the balls. They need time to play—did the ball make it into the hole?, time to compare—the heavy ball bumped off the path here but the light one kept going, time to think and talk about why, and time to revise their structures—“I’m going to make it better this time!” By designing, discussing their ideas, building, and revising their designs, I hope the children will gain experience with physical science concepts of force and motion while developing their spatial thinking. READ MORE

Websites trumpeting high school sexual slanders to the world | Mater Maria Catholic College, Barrenjoey High School Cromer High School, Narrabeen Sports High School, Northern Beaches Christian School, Pittwater High School, Stella Maris College, Brigidine College St Ives


THOUSANDS of Sydney school students are using social networking sites on which teenagers have been subjected to malicious sexual slander and cyber bullying.

''Root-rater'' and teenage gossip sites, based around schools or suburbs, have exploded in poularity in recent months but schools appear to be unaware of the extent of the problem.Northern Beaches Root Rates, a typical Facebook version, was pulled down on Thursday night when it had more than 1200 friends, drawn from schools including Mater Maria Catholic College, Barrenjoey High School Cromer High School, Narrabeen Sports High School, Northern Beaches Christian School, Pittwater High School, Stella Maris College, Brigidine College St Ives and Ravenswood School for Girls.A number of users had attended Freshwater Senior Campus which is part of the Northern Beaches Secondary College. Two students from another campus, Mackellar Girls, were targetted. About one girl an anonymous poster wrote: ''She goes all right but she had a really hairy bum whole [sic] and she squirts too much.''Another poster wrote of a girl: ''Chunky thighs, huge arse ... always available for a root for those who are hard up.''Ms Christine Del Gallo, principal at the Mackellar Girls campus in Manly Vale, said she had received no recent complaints of cyberbullying until contacted by the Herald."Action is being taken to identify the authors of this offensive material, which has also been referred to the department's Child Wellbeing Unit and the department's Safety and Security Directorate," she said.

"Any sexual references in cyber-bullying are offensive, and appropriate measures need to be taken to deal with them and to support the victims.''Most of the vile comments are made about girls and young women, although youths too are subjected to sexual ratings and abuse.NSW Police said vile gossip posts could lead to criminal charges such as stalk/intimidate or using a carriage service to threaten or menace. In a Sydney court last year a women was successfully prosecuted over threatening and inciting violence against another women on a social networking site. Similar charges were brought against a Sydney man in 2008. Read More

Websites trumpeting high school sexual slanders to the world | Mater Maria Catholic College, Barrenjoey High School Cromer High School, Narrabeen Sports High School, Northern Beaches Christian School, Pittwater High School, Stella Maris College, Brigidine College St Ives


THOUSANDS of Sydney school students are using social networking sites on which teenagers have been subjected to malicious sexual slander and cyber bullying.

''Root-rater'' and teenage gossip sites, based around schools or suburbs, have exploded in poularity in recent months but schools appear to be unaware of the extent of the problem.Northern Beaches Root Rates, a typical Facebook version, was pulled down on Thursday night when it had more than 1200 friends, drawn from schools including Mater Maria Catholic College, Barrenjoey High School Cromer High School, Narrabeen Sports High School, Northern Beaches Christian School, Pittwater High School, Stella Maris College, Brigidine College St Ives and Ravenswood School for Girls.A number of users had attended Freshwater Senior Campus which is part of the Northern Beaches Secondary College. Two students from another campus, Mackellar Girls, were targetted. About one girl an anonymous poster wrote: ''She goes all right but she had a really hairy bum whole [sic] and she squirts too much.''Another poster wrote of a girl: ''Chunky thighs, huge arse ... always available for a root for those who are hard up.''Ms Christine Del Gallo, principal at the Mackellar Girls campus in Manly Vale, said she had received no recent complaints of cyberbullying until contacted by the Herald."Action is being taken to identify the authors of this offensive material, which has also been referred to the department's Child Wellbeing Unit and the department's Safety and Security Directorate," she said.

"Any sexual references in cyber-bullying are offensive, and appropriate measures need to be taken to deal with them and to support the victims.''Most of the vile comments are made about girls and young women, although youths too are subjected to sexual ratings and abuse.NSW Police said vile gossip posts could lead to criminal charges such as stalk/intimidate or using a carriage service to threaten or menace. In a Sydney court last year a women was successfully prosecuted over threatening and inciting violence against another women on a social networking site. Similar charges were brought against a Sydney man in 2008. Read More

Maris Stella High School (MSHS) 新加坡海星中学 (Xing Jia Po Hai Xing Zhong Xue)


Maris Stella High School (Chinese: 新加坡海星中学, Abbreviation: MSHS) is an autonomous, SAP, Government-aided, all-boys Catholic secondary and primary school run by the international Marist Brothers at Mount Vernon Road in Singapore. It was headed by Bro. Anthony Tan from 1984 to 2009. Mr Joseph Lim Choon Kiat, the former Vice Principal, replaced Brother Anthony on 29 December 2009. It is placed in Band 3 in the 2010 School Achievement Table for Special/Express Course compiled by the Ministry of Education and, on that basis, is considered to be one of the top 20 schools in Singapore. Its teachers and students are also involved in non-academic fields including uniformed groups, sports such as archery, badminton, basketball, bowling, softball, table tennis, information technology, life sciences and Chinese debate.

Motto: 勤勉忠勇 (Diligence, Determination, Loyalty and Courage)
Location: 25 Mount Vernon Road, Singapore 368051,
Type: SAP, Autonomous, Government-aided
Session: Single session
Established: 1958
Principal: Mr Joesph Lim Choon Kiat
Enrolment: Approx. 1,500
Colour(s): Blue, black
Mission: The holistic development of each Marist that blends Faith, Culture and Life, with Respect to his human dignity.
Vision: A Marist Gentleman, Scholar and Sportsman

Source: Wikipedia

Maris Stella High School (MSHS) 新加坡海星中学 (Xing Jia Po Hai Xing Zhong Xue)


Maris Stella High School (Chinese: 新加坡海星中学, Abbreviation: MSHS) is an autonomous, SAP, Government-aided, all-boys Catholic secondary and primary school run by the international Marist Brothers at Mount Vernon Road in Singapore. It was headed by Bro. Anthony Tan from 1984 to 2009. Mr Joseph Lim Choon Kiat, the former Vice Principal, replaced Brother Anthony on 29 December 2009. It is placed in Band 3 in the 2010 School Achievement Table for Special/Express Course compiled by the Ministry of Education and, on that basis, is considered to be one of the top 20 schools in Singapore. Its teachers and students are also involved in non-academic fields including uniformed groups, sports such as archery, badminton, basketball, bowling, softball, table tennis, information technology, life sciences and Chinese debate.

Motto: 勤勉忠勇 (Diligence, Determination, Loyalty and Courage)
Location: 25 Mount Vernon Road, Singapore 368051,
Type: SAP, Autonomous, Government-aided
Session: Single session
Established: 1958
Principal: Mr Joesph Lim Choon Kiat
Enrolment: Approx. 1,500
Colour(s): Blue, black
Mission: The holistic development of each Marist that blends Faith, Culture and Life, with Respect to his human dignity.
Vision: A Marist Gentleman, Scholar and Sportsman

Source: Wikipedia

da vinci code, opus dei, franc maçonnerie, franc maçon: The Trials HD Riddle: A Look At Gaming’s Da Vinci Code

da vinci code, opus dei, franc maçonnerie, franc maçon: The Trials HD Riddle: A Look At Gaming’s Da Vinci Code


Most of you know Trials HD as the punishingly difficult 2D racer on Xbox LIVE Arcade – but buried deep within the impossible jumps and the incredible physics puzzles is something far more elusive – a riddle. A fiendish riddle that would make Da Vinci dribble. In this one-of-a-kind feature Kotaku reader, and Trials HD obsessive, FatShady breaks down this incredible puzzle and speaks to the creators of the game to try and uncover the intriguing mystery that is… The Trials HD Riddle.

The Beginning
But what is the Trials HD riddle? So far we have very little idea with regards to how the individual pieces hang together – but, for now, it’s a series of clues – buried deep within the tracks of Trials HD – clues that work together to create a bizarre mystery that is as yet unsolved, a series of Easter Eggs loosely tied together in a way we can’t yet fathom.

Few who play, or even finish the game in its entirety, will be aware of their existence. The clues found so far can be seen in this video. Read More

da vinci code, opus dei, franc maçonnerie, franc maçon: The Trials HD Riddle: A Look At Gaming’s Da Vinci Code

da vinci code, opus dei, franc maçonnerie, franc maçon: The Trials HD Riddle: A Look At Gaming’s Da Vinci Code


Most of you know Trials HD as the punishingly difficult 2D racer on Xbox LIVE Arcade – but buried deep within the impossible jumps and the incredible physics puzzles is something far more elusive – a riddle. A fiendish riddle that would make Da Vinci dribble. In this one-of-a-kind feature Kotaku reader, and Trials HD obsessive, FatShady breaks down this incredible puzzle and speaks to the creators of the game to try and uncover the intriguing mystery that is… The Trials HD Riddle.

The Beginning
But what is the Trials HD riddle? So far we have very little idea with regards to how the individual pieces hang together – but, for now, it’s a series of clues – buried deep within the tracks of Trials HD – clues that work together to create a bizarre mystery that is as yet unsolved, a series of Easter Eggs loosely tied together in a way we can’t yet fathom.

Few who play, or even finish the game in its entirety, will be aware of their existence. The clues found so far can be seen in this video. Read More

da vinci code, opus dei, franc maçonnerie, franc maçon: Da Vinci Code author Dan Brown 'most donated' to Oxfam


Da Vinci Code author Dan Brown's books topped the list of most donated to Oxfam shops, the charity has said.

The US writer has now taken the dubious accolade for three years in a row, ahead of Ian Rankin and Top Gear host Jeremy Clarkson in the latest list.

But Brown was third in the list of best-selling authors at the charity shop chain, up from 10th in 2010.

Stieg Larsson, Swedish writer of The Girl with the Dragon Tattoo, was Oxfam's best-selling writer.

He finished ahead of Sophie Kinsella, Brown and Stephenie Meyer, while JK Rowling was the sixth best-seller.

Mills and Boon romantic fiction titles and Joanna Trollope scored new entries at seven and eight.

Ian Rankin, who was the best seller last year, fell outside the top 10.

Twilight author Meyer finished fourth in the list of most donated authors, with Irish best-seller Maeve Binchy and racy writer Jackie Collins making the list for the first time.

Trollope, best known for titles including A Village Affair and The Rector's Wife, said she was "very gratified" to make the list and praised Oxfam for the "careful condition of its books and huge range of its titles".

The charity's new lists were announced as part of Bookfest, which runs until 17 July and features events at Oxfam shops around the UK including book signings and auctions. Reaad More

da vinci code, opus dei, franc maçonnerie, franc maçon: Da Vinci Code author Dan Brown 'most donated' to Oxfam


Da Vinci Code author Dan Brown's books topped the list of most donated to Oxfam shops, the charity has said.

The US writer has now taken the dubious accolade for three years in a row, ahead of Ian Rankin and Top Gear host Jeremy Clarkson in the latest list.

But Brown was third in the list of best-selling authors at the charity shop chain, up from 10th in 2010.

Stieg Larsson, Swedish writer of The Girl with the Dragon Tattoo, was Oxfam's best-selling writer.

He finished ahead of Sophie Kinsella, Brown and Stephenie Meyer, while JK Rowling was the sixth best-seller.

Mills and Boon romantic fiction titles and Joanna Trollope scored new entries at seven and eight.

Ian Rankin, who was the best seller last year, fell outside the top 10.

Twilight author Meyer finished fourth in the list of most donated authors, with Irish best-seller Maeve Binchy and racy writer Jackie Collins making the list for the first time.

Trollope, best known for titles including A Village Affair and The Rector's Wife, said she was "very gratified" to make the list and praised Oxfam for the "careful condition of its books and huge range of its titles".

The charity's new lists were announced as part of Bookfest, which runs until 17 July and features events at Oxfam shops around the UK including book signings and auctions. Reaad More

da vinci code, opus dei, franc maçonnerie, franc maçon: The bizarre mathematical conundrum of Ulam’s Spiral


If there's anything we learn from math teachers and the Da Vinci Code, it's that prime numbers are magic. They can do anything, and be anywhere. Including a doodle on a math paper.


In the 1960s, a gentleman known as Stanislaw Ulam was making his way through a miserable meeting by doodling on a piece of paper. Unlike most of us, who only manage to do 3D cubes and obscene drawings of people we don't like, Ulam tried filling his paper with math. And he discovered something very strange. Ulam drew a '1' at the center of his paper. Directly to the right of the one he drew a '2.' Above the two he drew '3', and continued spiralling the numbers outwards toward from the one. When he was done filling up the page, he decided to circle all the prime numbers - the numbers divisible only by one and themselves.

What he found was a lot of diagonal lines. They crisscrossed the paper, sometimes in short bursts and other times in long strings. While there are plenty of singularities and outliers, a large plot of the primes on Ulam's Spiral shows a remarkable density of diagonals. Further plotting with computers show that these diagonals appear even when the numbers get high, and even when the spiral doesn't originate with the number one. Change the spiral from one that's plotted on a grid to one that's plotted on a circular spiral, and the lines will change direction, but they'll still be there. Plot it on the hexagon - more lines.

It's things like this that make prime numbers so eery. They keep showing up in nature, in important functions, and in pure mathematical play. (I think they're the ghosts of ancient Greek numerals. Read More

da vinci code, opus dei, franc maçonnerie, franc maçon: The bizarre mathematical conundrum of Ulam’s Spiral


If there's anything we learn from math teachers and the Da Vinci Code, it's that prime numbers are magic. They can do anything, and be anywhere. Including a doodle on a math paper.


In the 1960s, a gentleman known as Stanislaw Ulam was making his way through a miserable meeting by doodling on a piece of paper. Unlike most of us, who only manage to do 3D cubes and obscene drawings of people we don't like, Ulam tried filling his paper with math. And he discovered something very strange. Ulam drew a '1' at the center of his paper. Directly to the right of the one he drew a '2.' Above the two he drew '3', and continued spiralling the numbers outwards toward from the one. When he was done filling up the page, he decided to circle all the prime numbers - the numbers divisible only by one and themselves.

What he found was a lot of diagonal lines. They crisscrossed the paper, sometimes in short bursts and other times in long strings. While there are plenty of singularities and outliers, a large plot of the primes on Ulam's Spiral shows a remarkable density of diagonals. Further plotting with computers show that these diagonals appear even when the numbers get high, and even when the spiral doesn't originate with the number one. Change the spiral from one that's plotted on a grid to one that's plotted on a circular spiral, and the lines will change direction, but they'll still be there. Plot it on the hexagon - more lines.

It's things like this that make prime numbers so eery. They keep showing up in nature, in important functions, and in pure mathematical play. (I think they're the ghosts of ancient Greek numerals. Read More

OJEE 2011 Counselling; OJEE 2011 Web Based Counselling Schedule 2011

OJEE 2011 Counselling; OJEE 2011 Web Based Counselling Schedule 2011

The web based Counseling Schedule of Orissa Joint Entrance Examination is published.

Online Registration and Choice Filling starts on 03.07.2011 for Lateral Entry Engineering, MCA/MBA, Pharmacy programmes. For Engineering Programmes it starts on 08.07.2011 to 19.07.2011

Detailed rank wise schedule for different disciplines will be notified soon in OJEE website www.odishajee.com, www.oiee.nic.in and in newspapers.

LIST OF NODAL CENTRE FOR DOCUMENT VERIFICATION AND DEPOSIT OF FEES
  • Veer Surendra Sai University of Technology Burla, Sambalpur,
  • Indira Gandhi Institute of Technology Sarang (Parjang), Dhenkanal,
  • College of Engineering & Technology, Techno Campus, Ghatikia, Kalinga Nagar, Bhubaneswar,
  • Centre For IT Education, Plot No.-4, Mancheswar Industrial Estate, Bhubaneswar,
  • International Institute of Information Technology, Gothapatna, Malipada, Bhubaneswar,
  • 6. Central Institute of Plastic Engineering and Technology, B-25, CNI Complex, Patia, Bhubaneswar-751024,
  • Orissa University of Agriculture & Technology, Bhubaneswar,
  • BJB Junior College, Bhubaneswar,
  • Madhusudan Industrial Training Institute, Cuttack,
  • Institute of Textile Technology, Choudwar, Cuttack,
  • North Orissa University, Sri Ram Chandra Vihar, Baripada,
  • Fakir Mohan University, Balasore,
  • Govt Autonomus College, Rourkela,
  • Govt. ITI, Rourkela,
  • Berhampur University, Bhanja Bihar, Berhampur,
  • Kha 11 ikote Autonomous College, Berhampur,
  • Govt. ITI, Bhawanipatna,
  • Vikram Dev (Autonomous) College, Jeypore, Koraput.
Read More

OJEE 2011 Counselling; OJEE 2011 Web Based Counselling Schedule 2011

OJEE 2011 Counselling; OJEE 2011 Web Based Counselling Schedule 2011

The web based Counseling Schedule of Orissa Joint Entrance Examination is published.

Online Registration and Choice Filling starts on 03.07.2011 for Lateral Entry Engineering, MCA/MBA, Pharmacy programmes. For Engineering Programmes it starts on 08.07.2011 to 19.07.2011

Detailed rank wise schedule for different disciplines will be notified soon in OJEE website www.odishajee.com, www.oiee.nic.in and in newspapers.

LIST OF NODAL CENTRE FOR DOCUMENT VERIFICATION AND DEPOSIT OF FEES
  • Veer Surendra Sai University of Technology Burla, Sambalpur,
  • Indira Gandhi Institute of Technology Sarang (Parjang), Dhenkanal,
  • College of Engineering & Technology, Techno Campus, Ghatikia, Kalinga Nagar, Bhubaneswar,
  • Centre For IT Education, Plot No.-4, Mancheswar Industrial Estate, Bhubaneswar,
  • International Institute of Information Technology, Gothapatna, Malipada, Bhubaneswar,
  • 6. Central Institute of Plastic Engineering and Technology, B-25, CNI Complex, Patia, Bhubaneswar-751024,
  • Orissa University of Agriculture & Technology, Bhubaneswar,
  • BJB Junior College, Bhubaneswar,
  • Madhusudan Industrial Training Institute, Cuttack,
  • Institute of Textile Technology, Choudwar, Cuttack,
  • North Orissa University, Sri Ram Chandra Vihar, Baripada,
  • Fakir Mohan University, Balasore,
  • Govt Autonomus College, Rourkela,
  • Govt. ITI, Rourkela,
  • Berhampur University, Bhanja Bihar, Berhampur,
  • Kha 11 ikote Autonomous College, Berhampur,
  • Govt. ITI, Bhawanipatna,
  • Vikram Dev (Autonomous) College, Jeypore, Koraput.
Read More

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