3,675 research outputs found

    Peeling Back the Student Privacy Pledge

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    Education software is a multi-billion dollar industry that is rapidly growing. The federal government has encouraged this growth through a series of initiatives that reward schools for tracking and aggregating student data. Amid this increasingly digitized education landscape, parents and educators have begun to raise concerns about the scope and security of student data collection. Industry players, rather than policymakers, have so far led efforts to protect student data. Central to these efforts is the Student Privacy Pledge, a set of standards that providers of digital education services have voluntarily adopted. By many accounts, the Pledge has been a success. Since its introduction in 2014, over 300 companies have signed on, indicating widespread commitment to the Pledge’s seemingly broad protections for student privacy. This industry participation is encouraging, but the Pledge does not contain any meaningful oversight or enforcement provisions. This Article analyzes whether signatory companies are actually complying with the Pledge rather than just paying lip service to its goals. By looking to the privacy policies and terms of service of a sample of the Pledge’s signatories, I conclude that noncompliance may be a significant and prevalent issue. Consumers of education software have some power to hold signatories accountable, but their oversight abilities are limited. This Article argues that the federal government, specifically the Federal Trade Commission, is best positioned to enforce compliance with the Pledge and should hold Pledge signatories to their promises

    Temperature or pressure controller

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    Silicon chip thermal sensor coupled into a solid state power source controls temperature or pressure in combustion research. The silicon chip sensing element is embedded in a ceramic support for insulation, and connected to a high resistance bridge which operates the solid state power amplifiers

    Peeling Back the Student Privacy Pledge

    Get PDF
    Education software is a multi-billion dollar industry that is rapidly growing. The federal government has encouraged this growth through a series of initiatives that reward schools for tracking and aggregating student data. Amid this increasingly digitized education landscape, parents and educators have begun to raise concerns about the scope and security of student data collection. Industry players, rather than policymakers, have so far led efforts to protect student data. Central to these efforts is the Student Privacy Pledge, a set of standards that providers of digital education services have voluntarily adopted. By many accounts, the Pledge has been a success. Since its introduction in 2014, over 300 companies have signed on, indicating widespread commitment to the Pledge’s seemingly broad protections for student privacy. This industry participation is encouraging, but the Pledge does not contain any meaningful oversight or enforcement provisions. This Article analyzes whether signatory companies are actually complying with the Pledge rather than just paying lip service to its goals. By looking to the privacy policies and terms of service of a sample of the Pledge’s signatories, I conclude that noncompliance may be a significant and prevalent issue. Consumers of education software have some power to hold signatories accountable, but their oversight abilities are limited. This Article argues that the federal government, specifically the Federal Trade Commission, is best positioned to enforce compliance with the Pledge and should hold Pledge signatories to their promises

    Economic Geology of the Moon: Some Considerations

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    Supporting any but the smallest lunar facility will require indigenous resources due to the extremely high cost of bringing material from Earth. The Moon has also attracted interest as a resource base to help support near-Earth space activities, because of the potential lower cost once the necessary infrastructure has been amortized. Obviously, initial lunar products will be high-volume, bulk commodities, as they are the only ones for which the economics of lunar production are conceivably attractive. Certain rarer elements, such as the halogens, C, and H, would also be extremely useful (for propellant, life support, and/or reagents), and indeed local sources of such elements would vastly improve the economics of lunar resource extraction. The economic geology of the Moon is discussed

    TAG user's manual

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    Transient Analysis Generator /TAG/ program for automatic circuit analysis of transient and steady state behavior of large class of electrical network
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