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STFC Programmatic Review 2012-13
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STFC Science Challenges
STFC Science Challenges
highlight our key scientific challenges.
The
STFC Science Roadmap
is built around these questions and is intended to set future scientific opportunities and options out in a structured way.
Related pages
MICE - Muon Ionization Cooling Experiment
Board Level Systems (DL)
MINOS
Electronic System Design
Electronic System Support
Professor Alfons Weber
nEDM
Planck
T2K
Direct Dark Matter searches
eEDM
Facilities and Experiments for Hadronic Physics
Future Flavour Physics
High energy gamma and cosmic ray astronomy
High Performance Computing
LOFAR
Quantum gravity
SNO+ - Sudbury Neutrino Observatory
Theory - Astronomy
D: How can we explore and understand the extremes of the universe?
D:1. How do the laws of physics work when driven to the extremes?
AGATA
ALICE
DiRAC
Direct Dark Matter searches
E-ELT
e-MERLIN
Gravitational Wave Observatories - Future Generation
Ground-based Gravitational Wave Detectors - Current Generation
High Performance Computing
INTEGRAL
Inverse Square Law project
LOFAR
Neutrino experiments
Nuclei at extremes of density and stability
NuSTAR - Nuclear Structure, Astrophysics and Reactions
SKA
Swift
Theory - Particle Physics
XMM-Newton - X-ray Multi-Mirror Newton
D:2. How can high energy particles and gravitational waves tell us about the extreme universe?
Advanced LIGO
Auger
DiRAC
Direct Dark Matter searches
Ground-based Gravitational Wave Detectors - Current Generation
High Energy Colliders
High energy gamma and cosmic ray astronomy
High Performance Computing
D:3. How do ultra-compact objects form, what is their nature and how does extreme gravity impact on their surroundings?
DiRAC
Direct Dark Matter searches
e-MERLIN
High energy gamma and cosmic ray astronomy
High Performance Computing
INTEGRAL
Swift
XMM-Newton - X-ray Multi-Mirror Newton
Direct Dark Matter searches
E-ELT
e-MERLIN
High energy gamma and cosmic ray astronomy
High Performance Computing
LOFAR
XMM-Newton - X-ray Multi-Mirror Newton