The Australian Entomologist, ISSN 1320-6133, 09/2019, Volume 46, Issue 3, p. 157
Journal Article
Chronobiology international, ISSN 0742-0528, 1984
Journal
Biological rhythm research, ISSN 0929-1016, 1994
Journal
Annals of the Rheumatic Diseases, ISSN 0003-4967, 06/2017, Volume 76, Issue Suppl 2, p. 232
BackgroundThe Multi-Biomarker Disease Activity (MBDA) score has been validated as a disease activity metric in rheumatoid arthritis (RA) patients. Patients...
Biomarkers | Diurnal
Biomarkers | Diurnal
Journal Article
TECHNICAL NOTE, Volume 34., 1 v.
Book
6.
Original article - DIURNAL VARIATION IN BLOOD PARAMETERS IN THE CHICKEN IN THE HOT TROPICAL CLIMATE
Original article - DIURNAL VARIATION IN BLOOD PARAMETERS IN THE CHICKEN IN THE HOT TROPICAL CLIMATE, 12/2000
Twelve adult male chicken of the Nigerian local strain were bled every 3 Hours for 24 hours. Haematological and serum biochemical parameters were measured in...
chicken | blood picture | Diurnal variation
chicken | blood picture | Diurnal variation
Journal
1968, 157
Book
1957, Volume nr. 3., 48
Book
1951, His Beobachtungen über geophysikalische Wirkungen der Sonne und des Mondes, Mitteilung Nr. 1, 28
Book
1843
eBook
2012, ISBN 9780674065857, viii, 272
Early birds and night owls are born, not made. Sleep patterns are the most obvious manifestation of the highly individualized biological clocks we inherit, but...
Biological rhythms | Chronobiology | Biological Sciences | Chronology | Sleep-wake cycle
Biological rhythms | Chronobiology | Biological Sciences | Chronology | Sleep-wake cycle
Book
1976, 204
Book
Journal of Geophysical Research: Atmospheres, ISSN 2169-897X, 06/2016, Volume 121, Issue 11, pp. 6472 - 6488
The radiative and microphysical effects of aerosols can affect the development of convective clouds. The objective of this study is to reveal if the overall...
lightning | radiative effect | precipitation | diurnal variation | aerosol | UNITED-STATES | LONG-TERM IMPACTS | SATELLITE-OBSERVATIONS | DEEP CONVECTIVE CLOUDS | AEROSOLS | ELECTRIFICATION | DIURNAL-VARIATIONS | CHINA | ICE-ICE COLLISIONS | CHARGE-TRANSFER | METEOROLOGY & ATMOSPHERIC SCIENCES | Outdoor air quality | Aerosols | Air pollution | Precipitation | Lighting | Meteorology | Precipitation (meteorology) | Diurnal variations | Lightning | Cleaning | Rivers | Delay
lightning | radiative effect | precipitation | diurnal variation | aerosol | UNITED-STATES | LONG-TERM IMPACTS | SATELLITE-OBSERVATIONS | DEEP CONVECTIVE CLOUDS | AEROSOLS | ELECTRIFICATION | DIURNAL-VARIATIONS | CHINA | ICE-ICE COLLISIONS | CHARGE-TRANSFER | METEOROLOGY & ATMOSPHERIC SCIENCES | Outdoor air quality | Aerosols | Air pollution | Precipitation | Lighting | Meteorology | Precipitation (meteorology) | Diurnal variations | Lightning | Cleaning | Rivers | Delay
Journal Article
Geophysical Research Letters, ISSN 0094-8276, 05/2013, Volume 40, Issue 10, pp. 1952 - 1959
Atmospheric thermal tides are global oscillations in atmospheric fields that are subharmonics of a solar day. While atmospheric tides on Earth are mainly...
radiative effect | water ice clouds | Mars atmosphere | MCS | tides | semi‐diurnal tide | semi-diurnal tide | MARTIAN ATMOSPHERE | THERMAL TIDES | GENERAL-CIRCULATION | MESOSPHERE | VARIABILITY | MGS TES | WAVES | GEOSCIENCES, MULTIDISCIPLINARY | TEMPERATURES | DIURNAL TIDE | Mars | Space exploration | Clouds | Atmosphere | Wind | Climate | Vertical profiles | General circulation models | Atmospheric models | Temperature variations | Radiation | Mars climate | Dust storms | Tides | Loads (forces) | Winter | Semidiurnal tides | Tropical atmosphere | Temperature effects | Diurnal tides | Dust clouds | Amplitude | Atmospheric circulation | Earth atmosphere | Computer simulation | Atmospheric tides | Climate models | Atmospheric particulates | General circulation | Ice clouds | Winds | Radiation absorption | Fields | Middle atmosphere | Annual variations | Water circulation | Aerosols | Thermal structure | Models | Circulation | Radiations | Water treatment | Temperature | Terrestrial environments | Oscillations | Earth | Tidal amplitude | Absorption | Modelling | Water scarcity | Mars dust | Ice | Dust | Water ice | Diurnal variations | Upper atmosphere | Atmospherics
radiative effect | water ice clouds | Mars atmosphere | MCS | tides | semi‐diurnal tide | semi-diurnal tide | MARTIAN ATMOSPHERE | THERMAL TIDES | GENERAL-CIRCULATION | MESOSPHERE | VARIABILITY | MGS TES | WAVES | GEOSCIENCES, MULTIDISCIPLINARY | TEMPERATURES | DIURNAL TIDE | Mars | Space exploration | Clouds | Atmosphere | Wind | Climate | Vertical profiles | General circulation models | Atmospheric models | Temperature variations | Radiation | Mars climate | Dust storms | Tides | Loads (forces) | Winter | Semidiurnal tides | Tropical atmosphere | Temperature effects | Diurnal tides | Dust clouds | Amplitude | Atmospheric circulation | Earth atmosphere | Computer simulation | Atmospheric tides | Climate models | Atmospheric particulates | General circulation | Ice clouds | Winds | Radiation absorption | Fields | Middle atmosphere | Annual variations | Water circulation | Aerosols | Thermal structure | Models | Circulation | Radiations | Water treatment | Temperature | Terrestrial environments | Oscillations | Earth | Tidal amplitude | Absorption | Modelling | Water scarcity | Mars dust | Ice | Dust | Water ice | Diurnal variations | Upper atmosphere | Atmospherics
Journal Article
1995, NOAA technical report NESDIS, Volume 84., 16, [8]
The Outgoing Longwave Radiation (OLR) data from the Earth radiaiton Budget Experiment (ERBE) were analyzed for the period during which all three ERBE...
radiation | diurnal variation | satellite data
radiation | diurnal variation | satellite data
Book
1986, NCAR technical notes., Volume NCAR/TN-273+STR, 29, 199
Book
Journal of the Atmospheric Sciences, ISSN 0022-4928, 2019, Volume 76, Issue 12, pp. 3717 - 3736
We present a conceptual model for the diurnal cycle of the dry atmosphericboundary layer (ABL). It may serve as a framework for future numerical studies on the...
Large eddy simulations | Boundary conditions | Diurnal effects | Atmosphere-land interaction | Single column models | Boundary layer | Wind | Turbulence | Temperature | Turbulent flow | Computer simulation | Wind effects | Earth science | Diurnal | Remote sensing | Complexity | Studies | Heat | Numerical analysis | Simulation | Dynamics | Diurnal variations | Atmospheric boundary layer | Boundary layer dynamics | Diurnal cycle | Evolution | Oceanic eddies | Mathematical models | Boundary layers | Civil engineering
Large eddy simulations | Boundary conditions | Diurnal effects | Atmosphere-land interaction | Single column models | Boundary layer | Wind | Turbulence | Temperature | Turbulent flow | Computer simulation | Wind effects | Earth science | Diurnal | Remote sensing | Complexity | Studies | Heat | Numerical analysis | Simulation | Dynamics | Diurnal variations | Atmospheric boundary layer | Boundary layer dynamics | Diurnal cycle | Evolution | Oceanic eddies | Mathematical models | Boundary layers | Civil engineering
Journal Article
2008, Advances in experimental medicine and biology, ISBN 0387097937, Volume 641., xiii, 153
Oscillatory dynamics are a central feature of a wide range of biological processes. This text fully explores cellular oscillations, focusing particularly on...
Circadian rhythms | Biological rhythms | Signal Transduction | Models, Biological | Cellular signal transduction | Biological Clocks | Circadian Rhythm | Oscillometry | Biomedicine general | Biomedicine
Circadian rhythms | Biological rhythms | Signal Transduction | Models, Biological | Cellular signal transduction | Biological Clocks | Circadian Rhythm | Oscillometry | Biomedicine general | Biomedicine
Book
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