2,310 research outputs found

    Electrode construction Patent

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    Electrode attached to helmets for detecting low level signals from skin of living creature

    Helmet system broadcasts electroencephalograms of wearer

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    EEG monitoring system consisting of nonirritating sponge-type electrodes, amplifiers, and a battery-powered wireless transmitter, all mounted in the subjects helmet, obtains electroencephalograms /EEGs/ of pilots and astronauts performing tasks under stress. After a quick initial fitting, the helmet can be removed and replaced without adjustments

    Narrowband, crystal-controlled biomedical telemetry system

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    Telemetry system utilizing miniature, single-channel, crystal-controlled transmitter is described suitable for biomedical applications. Receiver used in conjunction with transmitter is narrowband superheterodyne FM receiver with crystal control in both conversion stages

    Constant-amplitude RC oscillator

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    Sinusoidal oscillator has a frequency determined by resistance-capacitance /RC/ values of two charge control devices and a constant-amplitude voltage independent of frequency and RC values. RC elements provide either voltage-control, resistance-control, or capacitance-control of the frequency

    Estimating returns to scale with large imperfect panels

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    In this paper, the authors provide systematic panel-based econometric estimates of plant-level returns to scale for various 3-digit and 4-digit manufacturing industries, using panel data for Chilean plants. The paper attempts to answer two questions: 1) Do policies that promote"bigness"in manufacturing plants also promote greater productivity?; and 2) As plants grow, do they become more efficient? The paper is organized as follows. First, the author's assumptions regarding technology and behavior are presented. The following section discusses alternative estimators that deal with different aspects of the econometric problems they faced. Finally, applications of the alternative estimators to various 3-digit and 4-digit industries are reported and an attempt is made to determine which returns to scale estimates are the most reliable.Scientific Research&Science Parks,Science Education,Environmental Economics&Policies,Economic Theory&Research,Statistical&Mathematical Sciences

    A solid-state digital temperature recorder for space use

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    A solid-state, digital, temperature recorder has been developed for use in space experiments. The recorder is completely self-contained and includes a temperature sensor; all necessary electronics for signal conditioning, processing, storing, control and timing; and a battery power supply. No electrical interfacing with the particular spacecraft on which the unit is used is required. The recorder is small, light, and sturdy, and has no moving parts. It uses only biocompatible materials and has passed vibration and shock spaceflight qualification tests. The unit is capable of storing 2048, -10 to +45 C, 8-bit temperature measurements taken at intervals selectable by factors of 2 from 1.875 to 240 min; data can be retained for at least 6 months. The basic recorder can be simplified to accommodate a variety of applications by adding memory to allow more data to be recorded, by changing the front end to permit measurements other than temperature to be made, and by using different batteries to realize various operating periods. Stored flight data are read out from the recorder by means of a ground read-out unit

    A long-range and long-life telemetry data-acquisition system for heart rate and multiple body temperatures from free-ranging animals

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    The system includes an implantable transmitter, external receiver-retransmitter collar, and a microprocessor-controlled demodulator. The size of the implant is suitable for animals with body weights of a few kilograms or more; further size reduction of the implant is possible. The ECG is sensed by electrodes designed for internal telemetry and to reduce movement artifacts. The R-wave characteristics are then specifically selected to trigger a short radio frequency pulse. Temperatures are sensed at desired locations by thermistors and then, based on a heartbeat counter, transmitted intermittently via pulse interval modulation. This modulation scheme includes first and last calibration intervals for a reference by ratios with the temperature intervals to achieve good accuracy even over long periods. Pulse duration and pulse sequencing are used to discriminate between heart rate and temperature pulses as well as RF interference

    USER STUDIES FOR DIGITAL LIBRARIES EVALUATION AND DEVELOPMENT

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    This tutorial - the only one in JCDL 2012 Conference - introduces a range of methods which can be applied to understand better user needs and expectations (surveys, questionnaires, interviews, deep log analysis, personas, eye tracking, ethnographic studies) and to give a practical feel how they work in real practice through a series of recent studies. It includes real life international case study which will help the participants to get a better understanding what studies could be particularly helpful according to the products and services they develop, how to involve user s in digital library evaluation, and how to engage better with users

    Hanbury Brown Twiss effect for ultracold quantum gases

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    We have studied 2-body correlations of atoms in an expanding cloud above and below the Bose-Einstein condensation threshold. The observed correlation function for a thermal cloud shows a bunching behavior, while the correlation is flat for a coherent sample. These quantum correlations are the atomic analogue of the Hanbury Brown Twiss effect. We observe the effect in three dimensions and study its dependence on cloud size.Comment: Figure 1 availabl

    Collaborative Project Development in the Creation of an Interdepartmental Digitization Workflow

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    Creating workflows that involve the work of multiple departments within a large organization can be challenging, especially when the procedure itself is complex and involves a number of stakeholders. This paper describes and evaluates a collaborative project to develop an interdepartmental workflow for the digitization of unique library materials in a mid-sized academic library. The project includes an automated project management and materials tracking system. Project development involved three separate departments with different reporting channels. In order to navigate this difficulty and manage the large size of the project, a visual planning technique that included graphical representations of current and proposed workflows, as well as implementation timelines, was used. This visual planning technique allowed the project team to clearly organize their thoughts and plans and proved helpful in soliciting buy-in from stakeholders. The paper will outline the collaborative planning process, addressing the rewards and challenges of tackling such a project within a large organization, and present lessons learned for others attempting similar endeavors
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