7,438 research outputs found
Regulatory Horcruxes
The regulator that designs and first implements a federal regulatory program does not always have the ability to control the timing and process of how that regulatory program will, in this Symposium’s language, “exit.” As the 2016 election has demonstrated, the initiating regulator cannot necessarily plan in advance for the program’s expiration, diminution, or scaling back. A successor instead wields this power. Whether one views this as a terrible thing or a salutary feature of democracy depends in part upon one’s relationship to the regulatory status quo, but also implicates broader questions about policy stability and democratic accountability. At the very least, however, this fact raises several important questions about strategic regulatory design. First, is it possible to insulate or harden regulatory programs from successor exit? And second, when, if ever, would this be a good thing? This Article offers a systematic account of how regulators can make regulatory exit more challenging by looking outward, beyond the walls of a single, primary federal agency to other potential regulators or co-regulators, including secondary federal agencies, the states, and private actors.
This Article identifies as a potential antidote to regulatory exit a constellation of strategic techniques that I call regulatory horcruxes—much like the horcruxes Lord Voldemort created by placing portions of his soul into multiple external objects in order to ensure his immortality. An initiating regulator, be it Congress or a federal agency, can use such horcruxes in an effort to make successor exit more difficult by splitting programs beyond the walls of a single federal agency into other institutions. This Article first offers an analytical framework laying out five primary types of horcrux. It then examines horcruxes from a normative perspective, evaluating the comparative benefits and costs of their use in terms of their potential impact both on the durability of regulatory programs and on the quality of democratic deliberation. It acknowledges that horcruxes are an imperfect solution. Although dispersal or fragmentation of regulatory authority may insulate a program from deregulatory pressure, the fragmented regulatory program may exist in a weakened form that cannot accomplish as much as more direct, centralized regulation can. The Article concludes by offering a research agenda, including suggestions for further empirical research
CubeSat Measures World's First Ice Cloud Map to Support Climate Research
Virginia Diodes, Inc. received NASA SBIR Awards to fund research and development for a lesser developed region of the electromagnetic spectrumterahertz waves. Their work led to funding from NASA ESTO, and the resulting CubeSat (named IceCube) captured the worlds first ice cloud map, which will contribute to our understanding of Earths climat
Magnetothermodynamics: Measuring equations of state in a relaxed magnetohydrodynamic plasma
We report the first measurements of equations of state of a fully relaxed
magnetohydrodynamic (MHD) laboratory plasma. Parcels of magnetized plasma,
called Taylor states, are formed in a coaxial magnetized plasma gun, and are
allowed to relax and drift into a closed flux conserving volume. Density, ion
temperature, and magnetic field are measured as a function of time as the
Taylor states compress and heat. The theoretically predicted MHD and double
adiabatic equations of state are compared to experimental measurements. We find
that the MHD equation of state is inconsistent with our data.Comment: 4 pages, 4 figure
Reduction of tilt rotor download using circulation control
The effect of boundary layer control blowing on the download of a wing in the wake of a hovering rotor was measured in a small scale experiment. The objective was to evaluate the potential of boundary layer control blowing for reducing tilt rotor download. Variations were made in rotor thrust coefficient, blowing pressure ratio, and blowing slot height. The effect of these parameter variations on the wing download and wing surface pressures is presented. The boundary layer control blowing caused reductions in the wing download of 25 to 55 percent
Bromostibine complexes of iron(II): hypervalency and reactivity
The halostibine complexes [CpFe(CO)2(SbMe2Br)][CF3SO3] and [CpFe(CO)2(SbMe2Br)][BF4] both contain significant interactions between the anion and the formally neutral Sb(III) ligand, which simultaneously displays Lewis acidic and Lewis basic properties. The unexpected secondary product [CpFe(CO)(Me2BrSb-?-Br-SbBrMe2)] is formed in the presence of excess ligand, the strongly associated Br– anion bridging the two Sb donors to form a four-membered FeSb2Br ring.<br/
Bridging Opportunities in Human Health Services
The Campus to Community project aims to develop facilitated, in-depth site visits for VCU faculty and staff interested in exploring human health services opportunities in the Richmond community. The site visit experience will provide exposure to various community organizations specializing in human health, essentially creating a “bridge” between VCU’s campus and these facilities. This initiative is intended to motivate employees to action within the Richmond community by enabling them to observe first-hand the services that these organizations provide, learn more about the organizations’ missions, and engage in meaningful interactions with representatives on site. Likewise, it will allow Richmond community organizations to discuss unique needs and opportunities for partnerships with VCU
Measuring The Equations Of State In A Relaxed Magnetohydrodynamic Plasma
We report measurements of the equations of state of a fully relaxed magnetohydrodynamic (MHD) laboratory plasma. Parcels of magnetized plasma, called Taylor states, are formed in a coaxial magnetized plasma gun, and are allowed to relax and drift into a closed flux conserving volume. Density, ion temperature, and magnetic field are measured as a function of time as the Taylor states compress and heat. The theoretically predicted MHD and double adiabatic equations of state are compared to experimental measurements. We find that the MHD equation of state is inconsistent with our data
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