5,721 research outputs found
First Annual Report to the Avi Chai Foundation on the Progress of Its Decision to Spend Down
First Annual Report to the AVI CHAI Foundation after making a decision to Spend Down
College of Public Health News
Delivery of the 10 essential Public Health Services Statistics Profession Honors Dr.Karl E. Peace Dr. Joseph Telfair as First Chai
MODELING OF THE MAIN ACADEMIC PROCESSES
This paper presents the possibility for modeling the educational processes as a value added chai
The Joy of Teaching Legislation
I am going to talk about teaching legislation, a class I have taught several times at Georgetown University Law Center, as well as teaching a federal legislation clinic, which I founded ten years ago at the law school. Bill Eskridge has done a wonderful job laying out the different ways one can teach a course in legislation; you will see that my approach focuses on teaching the skills that, as Bill also correctly noted, all young lawyers will need when they start practicing
Arsenic Contents in Some Malaysian Vegetables
The arsenic content of forty-one common Malaysian vegetables was analysed by hydride generation-inductively coupled
plasma emission spectrometry. None of the samples showed level greater than 2.00 J.1 g {fJ. The highest was found in
bean sprouts (Phaseolus radiatus) (2.00 J.1 g {fl) and the lowest in sengkuang (Pachyrrhizus erosus) (0.20 J.1 g
{fl). Boiling caused a loss of 17 to 60% arsenic in the plants
High voltage planar multijunction solar cell
A high voltage multijunction solar cell is provided wherein a plurality of discrete voltage generating regions or unit cells are formed in a single generally planar semiconductor body. The unit cells are comprised of doped regions of opposite conductivity type separated by a gap or undiffused region. Metal contacts connect adjacent cells together in series so that the output voltages of the individual cells are additive. In some embodiments, doped field regions separated by a overlie the unit cells but the cells may be formed in both faces of the wafer
High voltage v-groove solar cell
A high voltage multijunction solar cell comprises a number of discrete voltage generating regions, or unit cells, which are formed in a single semiconductor wafer and are connected together so that the voltages of the individual cells are additive. The unit cells comprise doped regions of opposite conductivity types separated by a gap. The method includes forming V-shaped grooves in the wafer and orienting the wafer so that ions of one conductivity type can be implanted in one face of the groove while the other face is shielded. A metallization layer is applied and selectively etched away to provide connections between the unit cells
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