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New Physics and Chemistry Discovered at the CERN's Large Hadron Collider - Research Paper Example

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[Author’s Name] [Affiliation] [Class / Course] [Date & Day] New Physics and Chemistry Discovered at the CERN's Large Hadron Collider New Physics and Chemistry Discovered at the CERN's Large Hadron Collider Objectives: (i) To create all the conditions necessary for a possible Big Bang (ii) To identify Higg’s Bosons and mimic quark confinement in matter, so that the acquiring of mass by the physical particles through the interaction of quantum fields (called Higg’s field) gets explained (iii) To couple the theory of Quantum Mechanics with Einstein’s theory of General Relativity so that a Grand Unified Theory is developed to understand Quantum Gravity, and hence Dark Matter, Supersymmetr…
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New Physics and Chemistry Discovered at the CERNs Large Hadron Collider
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New Physics and Chemistry Discovered at the CERN's Large Hadron Collider

Download file to see previous pages... If this occurs, it will produce a material known as quark-gluon plasma, which probably made up the universe in the time following the Big Bang. Physicists are interested in this material because the expansion and cooling of the material would likely show how the particles that exist today arose out of the conditions following the Big Bang (“CERN - LHC Experiments: ALICE”) 2. ATLAS: A Toroidal LHC Apparatus, records measurements for the results of particle collisions. It tracks what particles are created and destroyed in a given collision, and the path of travel and energy for those particles (“CERN - LHC Experiments: ATLAS”). They are both considered general-purpose detectors. The experiments being performed using them focus on the search for the Higgs boson and the substance known as dark matter (“CERN - LHC Experiments: ATLAS”; “CERN - LHC Experiments: CMS”). ...
3. CMS: Compact Muon Solenoid, has the same research goals as ATLAS, but it has different technical specifications to achieve those goals, especially with regard to the design of the magnet system within the equipment (“CERN - LHC Experiments: CMS”). The CMS has been designed to detect the presence of “missing” energy, which could indicate the presence of stable but weakly-interacting particles, such as energetic neutrinos. This missing energy occurs when the particle moves in the same direction as the beam pipe and so cannot be detected; the use of the CMS helps to cover this gap and provide a more complete picture of the collision event (Pi et al. 2011) 4. LHCb: Large Hadron Collider beauty is expected to help us understand why the universe appears to be composed almost entirely of matter, but no antimatter. It specializes in investigating the slight differences between matter and antimatter by studying a type of particle called the 'beauty quark', or 'b quark'.” (“CERN - The LHC Experiments: LHCb”) 5. TOTEM: TOTal Elastic and diffractive cross section Measurement device is included in the experimental set-up to study the physics of the elementary particles that is always hidden to the general-purpose experiments carried in such an accelerator. It is of immense importance to measure the size of the proton and also calculate accurately the LHC's luminosity, so that the results may be utilized for calibration of the whole set-up (“CERN - LHC Experiments: TOTEM”) 6. LHCf: Large Hadron Collider forward tries to simulate Cosmic Rays, which are the naturally occurring charged particles in Earth’s upper atmosphere, colliding with our atmosphere and resulting in stream of ...Download file to see next pagesRead More
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