Pakistan Beats India to Associate Membership of CERN

"It would be embarrassing if Pakistan becomes an associate member of CERN before India", said eminent Indian scientist and Homi Bhabha Professor Bikash Sinha in early June, 2014. Well, it has happened this week. Pakistan is now an associate member of CERN, the world's largest and most prestigious center for science research.

Large Hadron Collider at CERN
Pakistan is the first Asian country and only the third in the world after Turkey and Serbia to be honored with CERN's associate membership. The status of associate member is a step before full membership. As an associate member, Pakistan  is entitled to attend open and restricted sessions of the organization.

The CERN was founded in 1953 by 12 European nations including Belgium, Denmark, France, the Federal Republic of Germany, Greece, Italy, the Netherlands, Norway, Sweden, Switzerland, the United Kingdom and Yugoslavia. The organization was subsequently joined by Austria (1959), Spain (1961-1969, re-joined 1983), Portugal (1985), Finland (1991), Poland (1991), Czechoslovak Republic (1992), Hungary (1992), Bulgaria (1999) and Israel (2014). The Czech Republic and Slovak Republic re-joined CERN after their mutual independence in 1993.

CERN now has 21 member states and Romania is a candidate to become a member state. Serbia is an associate member in the pre-stage to membership. "Observer" status allows non-member states to attend council meetings and to receive council documents, without taking part in the decision-making procedures of the organization. Over 600 institutes and universities around the world use CERN's facilities.


Pakistan's National Center for Physics (NCP) has been collaborating with CERN since 2000.  Pakistan's associate membership application was unanimously approved at a meeting of the CERN council on September 17 this year. The final approval came this week after a report of a CERN “fact-finding mission” to Pakistan in February 2014 was accepted.

CERN is leading the most high-profile effort to find "God Particle" about 300 ft below ground in a tunnel at the French-Swiss border. Buried there is a massive particle accelerator and super collider called LHC (Large Hadron Collider) run by CERN (European Organization of Nuclear Research), which has two beams of particles racing at nearly the speed of light in opposite directions and the resulting particles produced from collisions are being detected by massive detectors in the hope of experimentally finding the fundamental particle of which everything in the universe is built from: God Particle.

Dr. Hafeez Hoorani and President Musharraf

Among the world scientists working at CERN on LHC project is Professor Hafeez Hoorani of Pakistan's Quaid-e-Azam University in Islamabad. He is one of 27 Pakistani scientists at CERN. Hoorani has acknowledged that Pakistan government's support for Pakistani scientists' serious involvement at CERN materialized only after 1999, the year former President Musharraf's government assumed power. He also gives credit to Dr. Abdus Salam, Pakistan's only Nobel Laureate, for inspiring him and his colleagues to pursue serious scientific research. Here's what Professor Hoorani says about Pakistan's involvement in LHC and CERN:

When I first came to CERN, I was mainly working on technical things but became increasingly involved in political issues. In 1999, I went back to Pakistan to set up a group working on different aspects of the LHC project. There I had to convince my people and my government to collaborate with CERN, which was rather difficult, since nobody associated science with Switzerland. It is known as a place for tourism, for its watches, and nice places to visit.

However, Pakistan already had an early connection to CERN through the late Abdus Salam, the sole Nobel laureate from Pakistan in science and one of the fathers of the electroweak theory. CERN has been known to the scientific community of Pakistan since 1973 through the discovery of neutral currents which eventually led to the Nobel Prize for Salam. We are contributing much more now because of the students who worked with Salam, who know his theories and CERN, and who are now placed at highly influential positions within the government of Pakistan. They have helped and pushed Pakistan towards a very meaningful scientific collaboration with CERN. People now know that there is an organization called CERN. It took a long time to explain what CERN is about, and I brought many people here to show them, because they did not imagine CERN this way. Many people support us now which gives us hope…”



In addition to the 27 scientists, Pakistan has made material contributions to the tune of $10m. Pakistan signed an agreement with CERN which doubled the Pakistani contribution from one to two million Swiss francs. And with this new agreement Pakistan started construction of the resistive plate chambers required for the CMS muon system. While more recently, a protocol has been signed enhancing Pakistan’s total contribution to the LHC program to $10 million.

Pakistan has contributed the LHC in numerous ways including some of the following in particular:

1. Detector construction
2. Detector simulation
3. Physics analysis
4. Grid computing
5. Computational software development
6. Manufacturing of mechanical equipment
7. Alignment of the CMS (Compact Muon Solenoid) tracker using lasers
8. Testing of electronic equipment
9. Barrel Yoke: 35 Ton each feet made in Pakistan
10. Assembly of CF (Carbon Fiber) Fins for the Silicon Tracker’s TOB (Tracker Outer Barrel).
11. 245 of the 300 CMS chambers required were made in Islamabad.

Pakistan has had an impressive 50 per cent increase in the number of research publications during just the last two years, going up from 3,939 to 6,200. This has been the second highest increase worldwide, according to SCimago, the world's leading research database. The latest QS world rankings include 10 Pakistani universities among Asia's top 300.



Rise of research and publications at Pakistani universities began during Musharraf years when the annual budget for higher education increased from only Rs 500 million in 2000 to Rs 28 billion in 2008, to lay the foundations of the development of a strong knowledge economy, according to former education minister Dr. Ata ur Rehman. Student enrollment in universities increased from 270,000 to 900,000 and the number of universities and degree awarding institutions increased from 57 in 2000 to 137 by 2008. Government R&D spending jumped seven-fold as percentage of GDP from 0.1% of GDP in 1999 to 0.7% of GDP in 2007.

Related Links:

Haq's Musings

Pakistani Scientists at CERN

10 Pakistani Universities Among Asia's Top 300

Genomics and Biotech Research in Pakistan

Human Capital Growth in Pakistan

Educational Attainment in Pakistan

Pakistan Human Development in Musharraf Years

Robotics Growth in Pakistan 

Views: 581

Comment by Riaz Haq on December 19, 2014 at 9:17am

The world's top particle physics lab has admitted Pakistan as an associate member, a year after Israel was voted in as a full member.

Rolf Heuer, director general of the European Organization for Nuclear Research, known as CERN, says he signed a document Friday in Islamabad in the presence of Prime Minister Nawaz Sharif that admits Pakistan if the government ratifies the associate membership.

Heuer said in a statement Friday that Pakistan has been "a strong participant" in CERN research since the 1990s ? and its inclusion in the lab's community serves other important purposes as well.

"Bringing nations together in a peaceful quest for knowledge and education is one of the most important missions of CERN," he said.

The status upgrade means nuclear-armed Pakistan will have more access and say in the research, and that it will be able to bid for contracts, but also that it must contribute more financially each year to the facility.

Pakistan and CERN signed a cooperation agreement in 1994 through which the nation has contributed to the lab's major experiments and become involved in developing CERN's particle accelerator.

Pakistan became a nuclear power in 1988. It routinely test-fires what it claims are indigenously developed missiles.

Last December, the governing council of CERN unanimously voted to accept Israel as the 21st full member, making it the first non-European country to achieve that status. Israel had gained observer status in 1991 and then became an associate member in 2011.

http://abcnews.go.com/Technology/wireStory/cern-nuclear-physics-lab...

Comment by Riaz Haq on December 3, 2016 at 8:33pm

Inside the life of #Pakistan’s first female string theorist. #Physics #Science #MIT

http://www.dawn.com/news/1300054

Tasneem Zehra Husain, Pakistan’s first female string theorist at the mere age of 26, recently published her new book Only the Longest Threads, which fictionalises major breakthroughs in physics through the minds of the people who lived in those periods of discovery, reports the MIT Technology Review Pakistan.

Husain is an eminent scientist, writer and educator who obtained her bachelor of science in mathematics and physics from Kinnaird College and a masters degree in physics from the Quaid-i-Azam University.

She was awarded a scholarship by the Abdus Salam International Centre for Theoretical Physics (ICTP) to study in the field of High-Energy Physics in Trieste, Italy. Husain obtained her PhD in theoretical physics from Stockholm University, and then went on to do her post-doctoral research at Harvard University. While still a post-doc, she helped found the Lahore University of Managment Sciences (LUMS) School of Science and Engineering in Lahore, where she later taught as a faculty member.

Husain has represented Pakistan at the meeting of nobel laureates in Lindau, Germany. She has written extensively for several magazines and newspapers, including the award winning blog.

Tasneem Zehra Husain sat down with MIT Technology Review Pakistan to talk about her life, research and her aspirations for the field of theoretical Physics in the country, here is what she had to say.

A childhood surrounded by love, laughter and books
My parents were very supportive and involved in their children’s upbringing. My father is very hands-on so he would get involved in projects with us. My mother read to us since before we could even speak.

Growing up in the 80’s in Pakistan, there weren’t a lot of bookstores. There were maybe three or four like Anees book store or Iqbal book corner. They didn’t have a range of interesting things to read; only textbooks or classics were available. However, my parent’s had an extensive personal library of books at home and later my mother started the Alif Laila lending library when my brother and I were only one or two years old, so we grew up with books all around us.

Our parents would have to frequently bring home books to catalogue, so we saw them all the time and everywhere. We were encouraged to read voraciously and I think that was the main turning point for all of us.

Comment by Riaz Haq on January 4, 2020 at 4:44pm

IAEA Collaborating Centre
Pakistan Institute of Engineering and
Applied Sciences (PIEAS)


https://www.iaea.org/sites/default/files/19/09/collaborating-centre...


Collaboration on
Research, development and capacity building for
multidisciplinary application of advanced and innovative
nuclear technologies
Objectives
• Contribute to creation of new and support of the IAEA ongoing activities on
the advancements and innovation in reactor designs and their applications
• Develop new experiments at nuclear engineering facilities to create new
benchmark databases in support of on-going and planned IAEA
programmatic activities in reactor simulation and modelling and
multipurpose applications of advanced and innovative reactor designs, and
the IAEA HOPS part-task simulator web-platform
• Co-organize/host workshops, training courses and seminars, including
development of training materials and IAEA relevant publications
• Host researchers and IAEA fellows wishing to conduct joint research
and/or training in supporting capacity building for multidisciplinary
applications of advanced and innovative nuclear reactor systems
(electrical and non-electrical applications, hybrid energy systems, large
power reactor design and their abilities for isotope production)
• Sharing the experience of PIEAS with IAEA Member States on laboratory
experiments, numerical modelling and nuclear education
• Providing experts to IAEA in the relevant areas of work
Main Activities of the Collaboration
• Research and development in the advancements and innovation of reactor
designs and reactor numerical modelling and simulations
• Contribute to technical development, system analysis, and optimization of
nuclear-renewable hybrid energy systems
• Conduct new experiments at the research facilities creating new
experimental data for the validation of computer codes for modelling of
advanced and innovative reactor designs and contribute to the IAEA
HOPS platform in the development, validation and verification of the parttask simulators
• Train professionals on advanced and innovative reactor designs with the
use of IAEA basic principle simulators and contribute to the creation of
new IAEA relevant publications
• Develop educational and training materials for hands-on capacity building
Related IAEA Projects
All projects under IAEA’s sub-programme on Technology Development for
Advanced Reactors and Non-Electric Applications (1.1.5) and specific projects
under IAEA’s sub-programmes on Research Reactors, Nuclear Knowledge
Management, and NA-Division of Physical and Chemical Sciences.
Designation period
2019-2023

Comment by Riaz Haq on June 28, 2023 at 5:05pm

Top European Research Labs Select Three teams of Secondary school students-- One Each Netherlands, Pakistan and the US--For Own Accelerator Beam Experiments at CERN and DESY


https://home.cern/news/press-release/cern/three-teams-secondary-sch...


Geneva and Hamburg, 28 June 2023. In 2023, for the second time in the history of the Beamline for Schools competition, the evaluation committee selected three winning teams. The team “Myriad Magnets” from the Philips Exeter Academy, in Exeter, United States, and the team “Particular Perspective”, which brings together pupils from the Islamabad College for Boys, the Supernova School in Islamabad, the Cadet College in Hasanabdal, the Siddeeq Public School in Rawalpindi and the Cedar College in Karachi, Pakistan, will travel to CERN, Geneva, in September 2023 to perform the experiments that they proposed. The team “Wire Wizards” from the Augustinianum school in Eindhoven, Netherlands, will be hosted at DESY (Deutsches Elektronen-Synchrotron in Hamburg, Germany) to carry out its experiment.


Beamline for Schools (BL4S) is a physics competition open to secondary school pupils from all around the world. The participants are invited to prepare a proposal for a physics experiment that can be undertaken at the beamline of a particle accelerator. A beamline is a facility that provides high-energy fluxes of subatomic particles that can be used to conduct experiments in different fields, including fundamental physics, material science and medicine.

---
“Congratulations to this year’s winners – may they have good beams, collect interesting data and generally have the time of their lives,” says Christoph Rembser, a CERN physicist at the ATLAS experiment and one of the founders of Beamline for Schools. “Every year I am astonished by how many young people submit very creative, interesting proposals. In 2014, we weren’t sure at all whether this competition would work. Ten years and 16 000 participants later, I am proud to say that it is obviously a resounding success.”

The fruitful collaboration between CERN and DESY started in 2019 during the shutdown period of the CERN accelerators. This year, the German laboratory will host its fifth team of winners.


------

The Pakistan team “Particular Perspective” will measure in detail the beam composition of the T10 beamline of the CERN Proton Synchrotron accelerator. The experiment set-up they designed will make it possible to differentiate between different particle species and measure their intensity.

“I am grateful to BL4S for having provided me with an opportunity to represent my country, Pakistan, and its budding community of aspiring physicists. This is a chance for us to experience physics at the highest level and will inspire people with interests similar to ours to reach greater heights,” says Muhammad Salman Tarar from the “Particular Perspective” team.

-------

The “Wire Wizards” team’s experiment focuses on detector development. The Dutch students designed and built a multi-wire proportional chamber (MWPC), a gas detector able to measure the position of a particle interacting with it, and they plan to characterise it using the electron beam available at DESY.

“The BL4S competition provides us with a unique educational experience that will be a highlight in our time as students,” says Leon Verreijt from the “Wire Wizards” team.

The winners have been selected by a committee of CERN and DESY scientists from a shortlist of 27 particularly promising experiments. All the teams in the shortlist will be awarded special prizes. In addition, one team will be recognised for the most creative video and 10 teams for the quality of physics outreach activities they are organising in their local communities, taking advantage of the knowledge gained by taking part in BL4S.

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