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  • Bivalvia  (1)
  • Brody's equation  (1)
  • Copepoda  (1)
  • asymmetric seafloor spreading  (1)
  • Springer  (3)
  • American Meteorological Society (AMS)
  • 2000-2004
  • 1995-1999  (3)
  • 1965-1969
  • 1995  (3)
Collection
Publisher
  • Springer  (3)
  • American Meteorological Society (AMS)
Years
  • 2000-2004
  • 1995-1999  (3)
  • 1965-1969
Year
  • 1995  (3)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Marine geophysical researches 17 (1995), S. 361-373 
    ISSN: 1573-0581
    Keywords: Australian-Antarctic discordance ; ridge jump ; asymmetric seafloor spreading
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract The crenulated geometry of the Southeast Indian ridge within the Australian-Antarctic discordance is formed by numerous spreading ridge segments that are offset, alternately to the north and south, by transform faults. Suggested causes for these offsets, which largely developed since ~ 20 Ma, include asymmetric seafloor spreading, ridge jumps, and propagating rifts that have transferred seafloor from one flank of the spreading ridge to the other. Each of these processes has operated at different times in different locations of the discordance; here we document an instance where a small (~ 20 km), young (〈 0.2 Ma), southward ridge jump has contributed to the observed asymmetry. When aeromagnetic anomalies from the Project Investigator-1 survey are superposed on gravity anomalies computed from Geosat GM and ERM data, we find that in segment B4 of the discordance (between 125° and 126° E), the roughly east-west-trending gravity low, correlated with the axial valley, is 20–25 km south of the ridge axis position inferred from the center of magnetic anomaly 1. Elsewhere in the discordance, the inferred locations of the ridge axis from magnetics and gravity are in excellent agreement. Ship track data confirm these observations: portions of Moana Wave track crossing the ridge in B4 show that a topographic valley correlated with the gravity anomaly low lies south of the center of magnetic anomaly 1; while other ship track data that cross the spreading ridge in segments B3 and B5 demonstrate good agreement between the axial valley, the gravity anomaly low, and the central magnetic anomaly. Based on these observations, we speculate that the ridge axis in B4 has recently jumped to the south, from a ridge location closer to the center of the young normally magnetized crust, to that of the gravity anomaly low. The position of the gravity low essentially at the edge of normally magnetized crust requires a very recent (〈 0.2 Ma) arrival of the ridge in this new location. Because this ridge jump is so young, it may be a promising location for future detailed studies of the dynamics, kinematics, and thermal effects of ridge jumps.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Hydrobiologia 312 (1995), S. 37-45 
    ISSN: 1573-5117
    Keywords: Copepoda ; Bivalvia ; New Guinea ; Pseudanthessius ; Lichomolgus
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Four species of Copepoda Poecilostomatoida are recorded from the mantle cavity of bivalve molluscs collected in West New Guinea (Irian Barat, Indonesia). Two of these are new to science: Pseudanthessius dimorphus and Lichomolgus hoi n. spp.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Journal of clinical monitoring and computing 11 (1995), S. 165-167 
    ISSN: 1573-2614
    Keywords: Measurement techniques: oxygen consumption ; Brody's equation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Computer Science , Medicine
    Notes: Abstract Objective. The objective of our study was to derive a linear approximation to Brody's equation for oxygen consumption as a simpler alternative for the clinician.Methods. The approximation was derived by using calculus to construct a line tangent to Brody's equation at 81 kg.Results. The linear approximation was derived to be: $$V_{O_2 } = \left( {2.5w + 67.5} \right)ml/\min ,$$ wherew is the subject's weight in kilograms. The error introduced by this linear approximation is 10.9% at 30 kg and 1.35% at 120 kg.Conclusions. This linear equation may have utility for approximating oxygen consumption when an approximation is required, as in closed circuit anesthesia. The utility of this equation is that it is linear and produces a result similar to Brody's equation.
    Type of Medium: Electronic Resource
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