Статті в журналах з теми "Albese"

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1

Chunga, Kervin, Franz Livio, Alessandro M. Michetti, and Leonello Serva. "Synsedimentary deformation of Pleistocene glaciolacustrine deposits in the Albese con Cassano Area (Southern Alps, Northern Italy), and possible implications for paleoseismicity." Sedimentary Geology 196, no. 1-4 (March 2007): 59–80. http://dx.doi.org/10.1016/j.sedgeo.2006.08.010.

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2

Albers, Sonja-Verena. "Adaptations of the archaeal cell membrane to heat stress." Frontiers in Bioscience 5, no. 1 (2000): 813. http://dx.doi.org/10.2741/albers.

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3

Brito, Miguel Centeno. "Assessing the Impact of Photovoltaics on Rooftops and Facades in the Urban Micro-Climate." Energies 13, no. 11 (May 28, 2020): 2717. http://dx.doi.org/10.3390/en13112717.

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This work addresses the potential impact of large-scale deployment of photovoltaics in the urban environment on the local micro-climate. A one- and two-dimensional steady-state irradiance balance model was developed to estimate the impact of changing the effective albedo of rooftops and facades fully covered with photovoltaic modules. Results show that, albeit small, with current PV conversion efficiencies, photovoltaics on rooftops are expected to have a heating effect on the urban environment. The effect of facades depends strongly on the reflective properties of the surroundings (e.g., road albedo) but it is always small (below 4%), and, therefore, photovoltaics ought not to be considered a mitigation strategy for urban heat island.
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4

Groschopf, Rainer, Andreas Etzold, and Eckhard Villinger. "Nachruf auf Albert Schreiner." Jahresberichte und Mitteilungen des Oberrheinischen Geologischen Vereins 99 (March 11, 2017): 595–98. http://dx.doi.org/10.1127/jmogv/99/0021.

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5

Shengcheng Cui, Shengcheng Cui, Zhen Wang Zhen Wang, and Shizhi Yang Shizhi Yang. "Parameterization of land surface albedo." Chinese Optics Letters 12, no. 11 (2014): 110101–5. http://dx.doi.org/10.3788/col201412.110101.

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6

Gravenhorst, G., Yu Knyazikhin, J. Kranigk, G. Miessen, O. Panfyorov, and K. G. Schnitzler. "Wird die Waldalbedo richtig gemessen?" Meteorologische Zeitschrift 8, no. 4 (September 9, 1999): 107–14. http://dx.doi.org/10.1127/metz/8/1999/107.

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7

Redmond Roche, Benjamin Heikki, and Martin D. King. "Quantifying the effects of background concentrations of crude oil pollution on sea ice albedo." Cryosphere 16, no. 10 (October 5, 2022): 3949–70. http://dx.doi.org/10.5194/tc-16-3949-2022.

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Abstract. Sea ice albedo plays an important role in modulating the climate of Earth and is affected by low background concentrations of oil droplets within the ice matrix that absorb solar radiation. In this study, the albedo response of three different types of bare sea ice (melting, first-year, and multi-year sea ice) are calculated at increasing mass ratios (0–1000 ng g−1) of crude oil by using a coupled atmosphere–sea ice radiative-transfer model (TUV-snow; Tropospheric Ultraviolet–Visible) over the optical wavelengths 400–700 nm. The different types of quasi-infinite-thickness sea ice exhibit different albedo responses to oil pollution, with a 1000 ng g−1 mass ratio of oil causing a decrease to 70.9 % in multi-year sea ice, 47.2 % in first-year sea ice, and 22.1 % in melting sea ice relative to the unpolluted albedo at a wavelength of 400 nm. The thickness of the sea ice is also an important factor, with realistic-thickness sea ices exhibiting similar results, albeit with a weaker albedo response for multi-year sea ice to 75.3 %, first-year sea ice to 66.3 %, and melting sea ice to 35.9 %. The type of oil also significantly affects the response of sea ice albedo, with a relatively opaque and heavy crude oil (Romashkino oil) causing a significantly larger decrease in sea ice albedo than a relatively transparent light crude oil (Petrobaltic oil). The size of the oil droplets polluting the oil also plays a minor role in the albedo response, with weathered submicrometre droplets (0.05–0.5 µm radius) of Romashkino oil being the most absorbing across the optical wavelengths considered. Therefore, the work presented here demonstrates that low background concentrations of small submicrometre- to micrometre-sized oil droplets have a significant effect on the albedo of bare sea ice. All three types of sea ice are sensitive to oil pollution; however, first-year sea ice and particularly melting sea ice are very sensitive to oil pollution.
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8

Casey, Kimberly A., Chris M. Polashenski, Justin Chen, and Marco Tedesco. "Impact of MODIS sensor calibration updates on Greenland Ice Sheet surface reflectance and albedo trends." Cryosphere 11, no. 4 (August 1, 2017): 1781–95. http://dx.doi.org/10.5194/tc-11-1781-2017.

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Abstract. We evaluate Greenland Ice Sheet (GrIS) surface reflectance and albedo trends using the newly released Collection 6 (C6) MODIS (Moderate Resolution Imaging Spectroradiometer) products over the period 2001–2016. We find that the correction of MODIS sensor degradation provided in the new C6 data products reduces the magnitude of the surface reflectance and albedo decline trends obtained from previous MODIS data (i.e., Collection 5, C5). Collection 5 and 6 data product analysis over GrIS is characterized by surface (i.e., wet vs. dry) and elevation (i.e., 500–2000 m, 2000 m and greater) conditions over the summer season from 1 June to 31 August. Notably, the visible-wavelength declining reflectance trends identified in several bands of MODIS C5 data from previous studies are only slightly detected at reduced magnitude in the C6 versions over the dry snow area. Declining albedo in the wet snow and ice area remains over the MODIS record in the C6 product, albeit at a lower magnitude than obtained using C5 data. Further analyses of C6 spectral reflectance trends show both reflectance increases and decreases in select bands and regions, suggesting that several competing processes are contributing to Greenland Ice Sheet albedo change. Investigators using MODIS data for other ocean, atmosphere and/or land analyses are urged to consider similar re-examinations of trends previously established using C5 data.
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9

Jacobi, Martin J., and Matthew C. Roudane. "Understanding Edward Albee." South Atlantic Review 53, no. 4 (November 1988): 169. http://dx.doi.org/10.2307/3200703.

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10

Hornby, Richard. "Albee and Pinter." Hudson Review 47, no. 1 (1994): 109. http://dx.doi.org/10.2307/3852167.

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11

Duffy, Susan, and Matthew C. Roudane. "Understanding Edward Albee." Theatre Journal 40, no. 2 (May 1988): 288. http://dx.doi.org/10.2307/3207678.

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12

Puchner, Martin. "Beckett/Albee (review)." Theatre Journal 56, no. 2 (2004): 306–8. http://dx.doi.org/10.1353/tj.2004.0069.

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13

Goldston, Stephen E. "George Wilson Albee." Journal of Primary Prevention 28, no. 1 (January 9, 2007): 21–25. http://dx.doi.org/10.1007/s10935-006-0067-3.

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14

Muñoz, Ricardo F. "¡Viva George Albee!" Journal of Primary Prevention 28, no. 1 (January 4, 2007): 41–44. http://dx.doi.org/10.1007/s10935-006-0074-4.

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15

Hopenhayn, Daniel. "“ALBERT CAMUS” / “ALBERT CAMUS”." Revista de Estudios Sociales, no. 25 (December 2006): 65–66. http://dx.doi.org/10.7440/res25.2006.07.

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16

Fiorito, Luca. "Between Progressivism and Institutionalism: Albert Benedict Wolfe on Eugenics." Journal of the History of Economic Thought 35, no. 4 (November 13, 2013): 449–69. http://dx.doi.org/10.1017/s105383721300028x.

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Albeit concerned with the biological element in social evolution, Albert B. Wolfe was among the very few economists of the progressive era who openly expressed their concerns about certain implications of eugenic rhetoric for the social science. Specifically, Wolfe questioned the strong hereditary boundaries that more extreme eugenicists suggested about human beings. A careful examination of Wolfe’s writings reveals that his reaction was rooted in the belief that many of the social problems that eugenicists attributed to hereditary limitations were actually imputable to the influence that the social, economic, and physical environment exercised on the individuals.
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17

Schmidt, Louise Steffensen, Guðfinna Aðalgeirsdóttir, Sverrir Guðmundsson, Peter L. Langen, Finnur Pálsson, Ruth Mottram, Simon Gascoin, and Helgi Björnsson. "The importance of accurate glacier albedo for estimates of surface mass balance on Vatnajökull: evaluating the surface energy budget in a regional climate model with automatic weather station observations." Cryosphere 11, no. 4 (July 14, 2017): 1665–84. http://dx.doi.org/10.5194/tc-11-1665-2017.

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Abstract. A simulation of the surface climate of Vatnajökull ice cap, Iceland, carried out with the regional climate model HIRHAM5 for the period 1980–2014, is used to estimate the evolution of the glacier surface mass balance (SMB). This simulation uses a new snow albedo parameterization that allows albedo to exponentially decay with time and is surface temperature dependent. The albedo scheme utilizes a new background map of the ice albedo created from observed MODIS data. The simulation is evaluated against observed daily values of weather parameters from five automatic weather stations (AWSs) from the period 2001–2014, as well as in situ SMB measurements from the period 1995–2014. The model agrees well with observations at the AWS sites, albeit with a general underestimation of the net radiation. This is due to an underestimation of the incoming radiation and a general overestimation of the albedo. The average modelled albedo is overestimated in the ablation zone, which we attribute to an overestimation of the thickness of the snow layer and not taking the surface darkening from dirt and volcanic ash deposition during dust storms and volcanic eruptions into account. A comparison with the specific summer, winter, and net mass balance for the whole of Vatnajökull (1995–2014) shows a good overall fit during the summer, with a small mass balance underestimation of 0.04 m w.e. on average, whereas the winter mass balance is overestimated by on average 0.5 m w.e. due to too large precipitation at the highest areas of the ice cap. A simple correction of the accumulation at the highest points of the glacier reduces this to 0.15 m w.e. Here, we use HIRHAM5 to simulate the evolution of the SMB of Vatnajökull for the period 1981–2014 and show that the model provides a reasonable representation of the SMB for this period. However, a major source of uncertainty in the representation of the SMB is the representation of the albedo, and processes currently not accounted for in RCMs, such as dust storms, are an important source of uncertainty in estimates of snow melt rate.
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18

Hui, Man-To, David Jewitt, Liang-Liang Yu, and Max J. Mutchler. "Hubble Space Telescope Detection of the Nucleus of Comet C/2014 UN271 (Bernardinelli–Bernstein)." Astrophysical Journal Letters 929, no. 1 (April 1, 2022): L12. http://dx.doi.org/10.3847/2041-8213/ac626a.

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Abstract We present a high-resolution observation of the distant comet C/2014 UN271 (Bernardinelli–Bernstein) using the Hubble Space Telescope on 2022 January 8. The signal of the nucleus was successfully isolated by means of a nucleus extraction technique, with an apparent V-band magnitude measured to be 21.65 ± 0.11, corresponding to an absolute magnitude of 8.63 ± 0.11. The product of the visual geometric albedo with the effective radius squared is p V R n 2 = 157 ± 16 km2. If the ALMA observation by Lellouch et al. refers to a bare nucleus, we derived a visual geometric albedo of 0.033 ± 0.009. If dust contamination of the ALMA signal is present at the maximum allowed level (24%), we found an albedo of 0.044 ± 0.012 for the nucleus having an effective diameter of 119 ± 15 km. In either case, we confirm that C/2014 UN271 is the largest long-period comet ever detected. Judging from the measured surface brightness profile of the coma, whose logarithmic gradient varies azimuthally between ∼1.0 and 1.7 as a consequence of solar radiation pressure, the mass production is consistent with steady-state production but not with impulsive ejection, as would be produced by an outburst. Using aperture photometry, we estimated an enormous (albeit uncertain) mass-loss rate of ∼103 kg s−1 at a heliocentric distance of ∼20 au.
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19

Andrews, E., P. J. Sheridan, and J. A. Ogren. "Seasonal differences in the vertical profiles of aerosol optical properties over rural Oklahoma." Atmospheric Chemistry and Physics Discussions 11, no. 4 (April 18, 2011): 11939–57. http://dx.doi.org/10.5194/acpd-11-11939-2011.

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Abstract. A small airplane made more than 450 aerosol optical property (light absorption and light scattering) vertical profile measurements (up to 4 km) over a rural Oklahoma site between March 2000 and July 2005. These profiles suggest significant seasonal differences in aerosol properties. The highest amounts of scattering and absorbing aerosol are observed during the summer, while the relative contribution of aerosol absorption is highest in the winter (i.e., single scattering albedo is lowest in winter). Aerosol absorption generally decreased with altitude below ∼1.5 km and then was relatively constant above that. Aerosol scattering decreased sharply with altitude below ∼1.5 km but, unlike absorption, also decreased at higher altitudes, albeit less sharply. The seasonal variability observed for aerosol loading is consistent with other aerosol measurements in the region including AERONET aerosol optical depth (AOD), CALIPSO vertical profiles, and IMPROVE aerosol mass. The column averaged single scattering albedo derived from in situ airplane measurements shows a similar seasonal cycle as the AERONET single scattering albedo inversion product, but a comparison of aerosol asymmetry parameter from airplane and AERONET platforms suggests differences in seasonal variability. The observed seasonal cycle of aerosol loading corresponds with changes in air mass back trajectories: the aerosol scattering was higher when transport was from polluted areas (e.g., the Gulf Coast) and lower when the air came from cleaner regions and/or the upper atmosphere.
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20

Juncu, Daniel, Xavier Ceamanos, Isabel F. Trigo, Sandra Gomes, and Sandra C. Freitas. "Upgrade of LSA-SAF Meteosat Second Generation daily surface albedo (MDAL) retrieval algorithm incorporating aerosol correction and other improvements." Geoscientific Instrumentation, Methods and Data Systems 11, no. 2 (November 24, 2022): 389–412. http://dx.doi.org/10.5194/gi-11-389-2022.

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Abstract. MDAL is the operational Meteosat Second Generation (MSG)-derived daily surface albedo product that has been generated and disseminated in near real time by EUMETSAT Satellite Application Facility for Land Surface Analysis (LSA-SAF) since 2005. We propose and evaluate an update to the MDAL retrieval algorithm which introduces the accounting for aerosol effects as well as other scientific developments: pre-processing recalibration of radiances acquired by the SEVIRI instrument aboard MSG and improved coefficients for atmospheric correction as well as for albedo conversion from narrow- to broadband. We compare the performance of MDAL broadband albedos pre- and post-upgrade with respect to three types of reference data: the EPS Ten-Day Albedo product ETAL is used as the primary reference, while albedo derived from in situ flux measurements acquired by ground stations and MODIS MCD43D albedo data are used to complete the validation. For the comparison to ETAL – conducted over the whole coverage area of SEVIRI – we see a reduction in average white-sky albedo mean bias error (MBE) from −0.02 to negligible levels (<0.001) and a reduction in average mean absolute error (MAE) from 0.034 to 0.026 (−24 %). Improvements can be seen for black-sky albedo as well, albeit less pronounced (14 % reduction in MAE). Further analysis distinguishing individual seasons, regions and land covers show that performance changes have spatial and temporal dependence: for white-sky albedo we see improvements over almost all regions and seasons relative to ETAL, except for Eurasia in winter; resolved by land cover we see a similar effect with improvements for all types for all seasons except winter, where some types exhibit slightly worse results (crop-, grass- and shrublands). For black-sky albedo we similarly see improvements for all seasons when averaged over the full data set, although sub-regions exhibit clear seasonal dependence: the performance of the upgraded MDAL version is generally diminished in local winter but better in local summer. The comparison with in situ observations is less conclusive due to the well-known problem of the spatial representativeness of near-ground observations with respect to satellite pixel footprint sizes. Comparison with MODIS at the same locations shows mixed results in terms of change in performance following the proposed upgrade but proves the good quality of the MDAL products in general. Based on the evidence presented in this study, we consider the updated algorithm version to be able to deliver a valuable improvement of the operational MDAL product. This improvement is two-fold: primarily, there is the refinement of the albedo values themselves; secondarily, the increased alignment with the ETAL product is beneficial for those who wish to exploit synergies between EUMETSAT's geostationary and polar satellites to generate data sets based on the LSA-SAF albedo products from the two different missions.
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21

Marquet, Antonio. "Albert Camus: Calígula y el poder tiránico." Fuentes Humanísticas 30, no. 56 (June 30, 2018): 139–58. http://dx.doi.org/10.24275/uam/azc/dcsh/fh/2018v30n56/marquet.

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22

Leonardi, S. "Transgenic trees: how far the pollen flies?" Forest@ - Rivista di Selvicoltura ed Ecologia Forestale 3, no. 2 (June 13, 2006): 159–61. http://dx.doi.org/10.3832/efor0384-003.

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23

Tooming, Heino, and Jüri Kadaja. "Snow cover and surface albedo in Estonia." Meteorologische Zeitschrift 9, no. 2 (July 14, 2000): 97–102. http://dx.doi.org/10.1127/metz/9/2000/97.

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24

Roudane, Matthew C., and Philip C. Kolin. "Conversations with Edward Albee." South Atlantic Review 54, no. 1 (January 1989): 160. http://dx.doi.org/10.2307/3200100.

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25

Grecco, Stephen, and Philip C. Kolin. "Conversations with Edward Albee." World Literature Today 63, no. 1 (1989): 108. http://dx.doi.org/10.2307/40145152.

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26

Kalson, Albert E. "CONVERSATIONS WITH EDWARD ALBEE." Resources for American Literary Study 17, no. 1 (1990): 187–90. http://dx.doi.org/10.2307/26366721.

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27

Geis, Deborah R., and Philip C. Kolin. "Conversations with Edward Albee." South Central Review 5, no. 4 (1988): 105. http://dx.doi.org/10.2307/3189069.

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28

Kalson, Albert E. "CONVERSATIONS WITH EDWARD ALBEE." Resources for American Literary Study 17, no. 1 (1990): 187–90. http://dx.doi.org/10.2307/resoamerlitestud.17.1.0187.

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29

Corlett, J. Angelo. "Albee, Rawls, and justice." American Psychologist 42, no. 8 (1987): 826–28. http://dx.doi.org/10.1037/0003-066x.42.8.826.

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30

Rhodes, Jean E. "My Mentor, George Albee." Journal of Primary Prevention 28, no. 1 (November 28, 2006): 59–60. http://dx.doi.org/10.1007/s10935-006-0077-1.

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31

Mamardashvili, Merab K. "Thought in Culture." Transcultural Studies 5, no. 1-2 (October 5, 2009): 17–29. http://dx.doi.org/10.1163/23751606-00501003.

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This essay on “Thought in Culture” was published twice in Russian, in 1989 and 1990, both versions being transcriptions of Mamardashvili’s lectures delivered orally. This English translation, by the Dutch philosophical scholar, Evert van der Zweerde, is the first to be published. The question of thought is considered in the context of the question of suicide, albeit not in the sense Albert Camus spoke of it, but, in the sense of the old philosophers, as the existence of the primordial evil in human nature. This primordial evil is in Man’s powerlessness (немогота), in that which is beyond Man’s capacity. Through this dialectic of power and powerlessness, Mamardashvili explores the relationship of the structure and function of thought in culture.
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32

Yip, Julianne. "Albedo." Environmental Humanities 13, no. 2 (November 1, 2021): 475–77. http://dx.doi.org/10.1215/22011919-9320266.

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33

Zawacki, A. "ALBEDO." Common Knowledge 9, no. 3 (October 1, 2003): 520–26. http://dx.doi.org/10.1215/0961754x-9-3-520.

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34

SCHOEN, CHAD. "ALBANESE STANDARD AND ALBANESE EXOTIC VARIETIES." Journal of the London Mathematical Society 74, no. 02 (October 2006): 304–20. http://dx.doi.org/10.1112/s0024610706023076.

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35

Wilson, Kristina. "Josef and Anni Albers: Designs for Living Josef Albers Anni Albers." Journal of the Society of Architectural Historians 64, no. 3 (September 2005): 362–64. http://dx.doi.org/10.2307/25068169.

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36

Wyżlic, Tomasz. "Albert von Tucholka – weapon supplier for the January Uprising." Masuro-⁠Warmian Bulletin 305, no. 3 (November 25, 2019): 591–98. http://dx.doi.org/10.51974/kmw-134907.

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In 1863, many inhabitants of East Prussia became involved in helping Polish insurgents. One of them was Albert von Tucholka, a merchant from Pisz, who bought weapons and ammunition in Eastern Prussia and delivered them to Poland. His activities were soon discovered by Prussian authorities. He spent almost three months in detention and the criminal proceedings against him were discontinued in May 1864.
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37

KORKMAZ, Hakan, Mustafa ARAZ, Mesut ÖZKAYA, Ahmet Ziya ŞAHİN, Zeynel Abidin ÖZTÜRK, and Ersin AKARSU. "A Rare Metabolic Bone Disease: Albers-Schönberg Disease: Case Report." Turkiye Klinikleri Journal of Endocrinology 10, no. 1 (2015): 40–43. http://dx.doi.org/10.5336/endocrin.2014-42636.

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38

Cui Yan, 崔岩, 刘亚飞 Liu Yafei, 刘康 Liu Kang та 褚金奎 Chu Jinkui. "地表反照率对天空偏振模式的影响". Acta Optica Sinica 41, № 17 (2021): 1701002. http://dx.doi.org/10.3788/aos202141.1701002.

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39

Rumualdo Ávila, Mauricio Simón. "Del absurdo y el Eros: Albert Camus." Sincronía XXV, no. 80 (July 3, 2021): 151–59. http://dx.doi.org/10.32870/sincronia.axxv.n80.6b21.

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This articule is a study about the relation between the philosophy of the absurd and the Eros in the literary work of the french writer Albert Camus, with the aim to show how these two conceptions are incompatible. To do this, the different settings of the absurd that are present in the books of Camus and their implications with the Eros were analyzed. This relation was approached with the visions of the characters that act with the presence or ausence of Eros
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40

Borghetti, M. "Forests, nitrogen and albedo, a very interesting trio indeed." Forest@ - Rivista di Selvicoltura ed Ecologia Forestale 6, no. 1 (January 29, 2009): 2–3. http://dx.doi.org/10.3832/efor0567-006.

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41

Galisz, Máté. "The founding President of the Hungarian Olympic Committee: Albert Berzeviczy." Kaleidoscope history 6, no. 11 (2015): 303–9. http://dx.doi.org/10.17107/kh.2015.11.303-309.

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Kang, Hye Min, Hanna Lee, Sang Gu Yim, and Young Dae Kim. "Histopathology of a acanthocephalan infection in swamp eel, Monopterus albus." Journal of fish pathology 26, no. 3 (December 31, 2013): 303–10. http://dx.doi.org/10.7847/jfp.2013.26.3.303.

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Kudaibergen, A. A., A. K. Nurlybekova, M. A. Dyusebaeva, Jiang Feng Yun, and J. Jenis. "PHYTOCHEMICAL STUDY OF ARTEMISIA TERRAE-ALBAE." REPORTS 4, no. 338 (August 15, 2021): 122–28. http://dx.doi.org/10.32014/2021.2518-1483.68.

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Jacobi, Martin J., Philip C. Kolin, and J. Madison Davis. "Critical Essays on Edward Albee." South Atlantic Review 53, no. 4 (November 1988): 167. http://dx.doi.org/10.2307/3200702.

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Brown, Tom, Philip Kolin, and J. Madison Davis. "Critical Essays on Edward Albee." South Central Review 5, no. 1 (1988): 106. http://dx.doi.org/10.2307/3189447.

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Friedland, M. "Albee spinal osteoplastic fixation surgery." Kazan medical journal 20, no. 4 (August 11, 2021): 429. http://dx.doi.org/10.17816/kazmj76532.

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Анотація:
Operation of osteoplastic fixation of the spine according to Albee, performed by Baer'om (Bull, of the Johns Hopkins Hosp., Vol. 33, No. 374, p. 140-142, 1922) in 50 cases, led V. to the following conclusion
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47

Ben-Zvi, Linda. "Edward Albee: A Casebook (review)." Theatre Journal 58, no. 3 (2006): 531–32. http://dx.doi.org/10.1353/tj.2006.0143.

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Rusinko, Susan, Philip C. Kolin, and J. Madison Davis. "Critical Essays on Edward Albee." World Literature Today 61, no. 4 (1987): 632. http://dx.doi.org/10.2307/40143876.

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Adler, Thomas P. "Edward Albee (review)." Modern Drama 52, no. 2 (2009): 254–56. http://dx.doi.org/10.1353/mdr.0.0101.

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Gatz, Margaret. "In Memory of George Albee." Journal of Primary Prevention 28, no. 1 (November 30, 2006): 19–20. http://dx.doi.org/10.1007/s10935-006-0073-5.

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