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Sound conduction

Conduct sound forestry management practices on state lands, provide... [Pg.100]

There are three widely accepted routes by which bone-conducted sound stimulates the cochlea. These are the compres-sional, inertial and osseotympanic theories of bone conduction (12). Compressional bone conduction implies that the cochlear shell is compressed slightly in response of the pressure variation caused by a sound. Inertial bone conduction alludes to a relative motion between the ossicular chain and the temporal bone for low frequency vibrations. The osseotympanic theory denotes a mechanism by which relative movement of the skull, with respect to the mandible, sets up pressure variation in the air present in the auditory meatus. Since perception of microwave pulses are correlated with the capacity to hear high-frequency sound, it rules out inertial or osseotympanic bone conduction as potential mechanisms for microwave acoustic effect. [Pg.320]

Administer fish and wildlife laws, emry out sound fish and wildlife mmiagement practices, and conduct fish and wildlife research Manage New York s marine and coastal resources Conduct sound forestry management practices on state lands, provide assistance to private forest landowners, and provide fire prevention and control... [Pg.100]

Conduct sound forestry management practices on state lands, provide assistance to private forest landowners, and provide fire prevention and control... [Pg.100]

Finally, in the same way that solids conduct sound, they also conduct heat, i.e., by lattice vibrations. Heat conduction occurs by the excitation and interaction of neighboring atoms. [Pg.461]

Because musicians go on concert tours, audio engineers accompany them to provide optimum live sound quality in each different venue. They conduct sound checks before performances and make adjustments for conditions such as wind on outdoor stages. [Pg.145]

V, 1781, ii, 295 Watt informed Priestley that steam conducts sound, ib., 388. [Pg.593]

In 1990, a test using scrap tires (2x2 in. I DE) to generate steam for electricity was conducted at the Elexsys plant. The I DE replaced 20% of the plant s coal. Results showed that IDE is an environmentally sound fuel. Particulate emissions were reduced by the lower ash content of IDE, volatile organic compounds (VOC) were reduced because of more efficient burning of I DE compared to coal, and carbon dioxide emissions were reduced because I DE contains half the fixed carbon found in coal. Nitrogen oxide, chlorine emissions, and metals were also reduced, and ferrous metals and dioxins were nondetectable (7). [Pg.13]

Ultrasonic Spectroscopy. Information on size distribution maybe obtained from the attenuation of sound waves traveling through a particle dispersion. Two distinct approaches are being used to extract particle size data from the attenuation spectmm an empirical approach based on the Bouguer-Lambert-Beerlaw (63) and a more fundamental or first-principle approach (64—66). The first-principle approach implies that no caHbration is required, but certain physical constants of both phases, ie, speed of sound, density, thermal coefficient of expansion, heat capacity, thermal conductivity. [Pg.133]

Transport Properties. Viscosity, themial conductivity, the speed of sound, and various combinations of these with other properties are called steam transport properties, which are important in engineering calculations. The speed of sound (Fig. 6) is important to choking phenomena, where the flow of steam is no longer simply related to the difference in pressure. Thermal conductivity (Fig. 7) is important to the design of heat-transfer apparatus (see HeaT-EXCHANGETECHNOLOGy). The viscosity, ie, the resistance to flow under pressure, is shown in Figure 8. The sharp declines evident in each of these properties occur at the transition from Hquid to gas phase, ie, from water to steam. The surface tension between water and steam is shown in Figure 9. [Pg.352]

Other sohd-state apphcations of sihcon carbide include its use as an electroluminescent diode for use in sound recording equipment and photomultipliers and controllers. It has been studied as a reflective surface for lasers. By combining its excellent thermal conductivity and high electrical resistance, sihcon carbide has also found apphcation as an insulating material for integrated circuit substrates. [Pg.468]

Available data on the thermodynamic and transport properties of carbon dioxide have been reviewed and tables compiled giving specific volume, enthalpy, and entropy values for carbon dioxide at temperatures from 255 K to 1088 K and at pressures from atmospheric to 27,600 kPa (4,000 psia). Diagrams of compressibiHty factor, specific heat at constant pressure, specific heat at constant volume, specific heat ratio, velocity of sound in carbon dioxide, viscosity, and thermal conductivity have also been prepared (5). [Pg.18]

Physical Properties. Most of the physical properties discussed herein depend on the direction of measurement as compared to the bedding plane of the coal. Additionally, these properties vary according to the history of the piece of coal. Properties also vary between pieces because of coal s britde nature and the crack and pore stmcture. One example concerns electrical conductivity. Absolute values of coal sample specific conductivity are not easy to determine. A more characteristic value is the energy gap for transfer of electrons between molecules, which is deterrnined by a series of measurements over a range of temperatures and is unaffected by the presence of cracks. The velocity of sound is also dependent on continuity in the coal. [Pg.221]

Extracted from U.S. Standard Atmosphere, 1976, National Oceanic and Atmospheric Administration, National Aeronautics and Space Administration and tte U.S. Air Force, Washington, 1976. Z = geometric altitude, T = temperature, P = pressure, g = acceleration of gravity, M = molecular weight, a = velocity of sound, i = viscosity, k = thermal conductivity, X = mean free path, p = density, and H = geopotential altitude. The notation 1.79.—5 signifies 1.79 X 10 . ... [Pg.265]

Sounds with a boiling point above 100° C). Figure 25-42 presents an lustration of the Method 0010 sampling train. Comprehensive chemical analyses, using a variety of applicable analytical methodologies, are conducted to determine the identity and concentration or the organic materials. [Pg.2207]

Routine tests are conducted on subsequent similar machines. The purpose of a routine lest is to ascertain that the machine is assembled correctly and will be able to withstand the appropriate high-voltage test, and will be in sound working eondition, both electrically and mechanically. As a minimum requirement these tests will consist of ... [Pg.252]

Not performing monitoring that is required hy the SSHAP may have potentially serious consequences. For noise monitoring, guidance should he written into the plan that specifies when noise monitoring will he performed. For instance, how should one handle the following situation Let s say you are on site hut you do not have a sound level meter. At what point do you need to monitor One rule of thumb for this situation is as follows if you cannot conduct a normal conversation with fellow employees that are within three feet, you are likely at or above 85dBA. Your plan should state this. And it should state when and if the site would need to have a sound level meter on site. [Pg.192]

Conductive hearing loss Hearing loss that is caused by blockage or other interference in the path by which sound energy is transferred to the inner ear. [Pg.1424]

Reider et al. (1965) describe the incident at Los Alamos Laboratory in Jackass Flats, Nevada. An experiment was conducted on January 9, 1964, to test a rocket nozzle, primarily to measure the acoustic sound levels in the test-cell area which occurred during the release of gaseous hydrogen at high flow rates. Hydrogen discharges were normally flared, but, in order to isolate the effect of combustion... [Pg.21]

Having agreed on PSM goals and objectives, your next step is to conduct a more detailed assessment of the present status of PSM activities within your company, to form the basis for your implementation plan. This baseline assessment works against both the model you have selected for PSM and the characteristics that describe a sound management system, such as those described by CCPS. [Pg.73]

Schsilwelle, /. sound wave, schsilzuleitend, a. sound-conducting. [Pg.383]

The anode material must stay firmly attached to the steel insert, which is necessary to conduct the current from the anode to the structure, throughout its design life to remain effective. Consequently surface preparation (by dry blast cleaning ) of the insert prior to casting, to ensure a sound bond with the anode material, is essential. Voids at the insert/anode material interface are undesirable as these will also affect the bond integrity. [Pg.145]


See other pages where Sound conduction is mentioned: [Pg.34]    [Pg.320]    [Pg.68]    [Pg.118]    [Pg.1302]    [Pg.394]    [Pg.163]    [Pg.274]    [Pg.94]    [Pg.34]    [Pg.320]    [Pg.68]    [Pg.118]    [Pg.1302]    [Pg.394]    [Pg.163]    [Pg.274]    [Pg.94]    [Pg.706]    [Pg.724]    [Pg.476]    [Pg.476]    [Pg.376]    [Pg.392]    [Pg.315]    [Pg.331]    [Pg.518]    [Pg.241]    [Pg.400]    [Pg.263]    [Pg.256]    [Pg.154]    [Pg.73]    [Pg.660]    [Pg.674]    [Pg.288]   


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