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Abraham D. Sofaer's 1980s Counter-terrorism Law and The Office of the Legal Adviser
Reconstruction of diffuse photon density wave interference for detection of small inhomogeneities in turbid media
Cleaner production: The search for new horizons
The Latvian building worker: Social dumping or social protectionism - The ambiguities of the Laval case
Nordic Corporate Board Diversity
How will Iran nuclear deal affect US-Gulf relations?
The Mediterranean region
Best practice guidelines on the provision of safe transport for wheelchair seated passengers in road vehicles
Living with a deteriorating disease: the trajectory with muscular dystrophy over ten years.
Experiences and consequences of chronic pain in persons with post-polio syndrome (PPS).
Appearance of serum antibodies to rat yolk-sac carcinomas during the latent period prior to primary tumor development
Energiförsörjning
Elastic nanobeam modelled using peridynamics - length scale effects
The traditional multiscale approach couples two models operating at different scales. An alternative modelling strategy, called peridynamics originally developed by [1], is to continualize the molecular dynamic models, thus replacing inhomogeneities present on smaller length scales by an enhanced continuum description on larger length scales resulting in a nonlocal reformulation of continuum mecha
Ora et labora: a stakeholder cum balacing factors model
Incorporating the Logics of Violence and Power: Addressing Rural Vietnam through the Lenses of Foucault and Bourdieu
Quantum Photoelectrochemistry
Interactions between organic molecules and transition metal oxide surfaces have been investigated by means of quantum chemical calculations. The studies have been aimed at understanding electrode-adsorbate interactions in photoelectrochemical devices, such as dye-sensitized solar cells. Structural properties of the interface between metal oxide surfaces and organic adsorbates have been investigat
Harmonic Analysis of Nonlinear and Uncertain Systems
Analys och syntes av en industrirobots dynamik
On the decoding bit error probability for binary convolutional codes
An explanation is given for the paradoxical fact that, at low signal-to-noise ratios, the systematic feedback encoder results in fewer decoding bit errors than does a nonsystematic feedforward encoder for the same code. The analysis identifies a new code property, the d-distance weight density of the code. For a given d-distance weight density, the decoding bit error probability depends on the num
