73,964 research outputs found

    Solitudo sive vitae patrum eremicolarum per antiquissimu[m] Patre[m] D. Hieronymu[m] eorundé primaru[m] olim conscripta [Material gráfico]: iam verò oeneis laminis.

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    Dedicatoria en verso firmada por Jean Turpin, al Cardenal Alejandro Perret - 1. PAVLVS. Tempore... capit.- 2 MARCO. Praebuit... manu./ M. de Vos fig: - 2. ANTONIUS. Progenie... dolos.- 3. HILARION fugiens... suam.- 4. ABRAHAM. A primis... sibi.- 5. MALCHUS. Acta... subit. - 6. IOANNES. Duxit... iugum. - 7. THEONAS. Officio... restitubeat ope. - 8. APOLLONIUS. Solinagus... sacre. - 9. MUTIUS excellens... humo. - 10. HELENUM. Mundities... sibi. - 12. ARSENIUS. Omnibus... fuit / Martín de Vos in. - 12. PAPHNUTIUS. Duxit... polis. - 13. DIDYMO. Tanta... malis. - 14. CALUPPANUS. Haud... pretio. - 14. HELIAS. Pregravis... sequi. - 15. SPIRIDIONIS. Tirones...dolos. - 16. EULOGIUS. Mahuit...suae. - 17. FRIARDUM . Nunneti... Deum / M. de Vos fig: - 17. APELLES. Moribus... manu. - 18. ORIGENES. In tristi... noui. - 19. EVAGRIUS sacri... dabat. - 20. OR deserta... fuit. - 20. EGIDIUM regis... potest / M. de Vos in. - 21. COPRES. Numinis... replet. - 22. MACHARIUS. Mundanum... Deum. - 23. SIMEON. Arua...rapit / Marti de Vos fig: - 23. MACHARIUS. Alter...feras. - 24. ZOERARDE. Haec toti...potest / Martín de Vos figuravit. - 24. ANUB. Magnus... iubet. - 25. CIOMUS. Et si non...fuit. - 26. BRUNO. Carthusiae...timor / M. de Vos figuravit -26. AMMON in Nitra... gregem. - 27. ONOFRIVS. Divinis... esuriem. - 28. PIAMON. In memore... modo. - 29. HIRONYMVS. Multiplici... styl

    Sylvae Sacrae [Material gráfico] : Monumenta sa[n]ctioris philosophie quam severa anachoretarum disciplina vitae et religio docuit : Illmo. et Rmo. D.D. Alexandro Perreto Sti. Laurentii in Damaso Diacono Card. de Montealto...

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    - 1. Iconius CHARITON... preces / M. de Vos invent - 3. EPHREM. Soli... malos / M. de Vos in. - 4. GUIDONE. Itala... queat / M. de Vos fig. - 6. EPIPHANIUS. Isacidum... preces / M. de Vos fi. - 7. IACOBE. Dextera... tumulo / Martí de Vos fig. - 8. BLASIUS hoc... manus / Martí de Vos figur. - 16. MARTINIANUS. Primitias... iter / Martin de Vos figur. - 28. DESIBODE. Dum... tuis / M. de Vos figu

    Distinctness effects on VOS order: Evidence from Yucatec Maya

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    Skopeteas S, Verhoeven E. Distinctness effects on VOS order: Evidence from Yucatec Maya. In: Avelino H, ed. New Perspectives in Mayan Linguistics. Newcastle: Cambridge Scholars Publishing; 2011: 275-300

    Distinctness effects on VOS order: Evidence from Yucatec Maya

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    Skopeteas S, Verhoeven E. Distinctness effects on VOS order: Evidence from Yucatec Maya. MIT Working Papers in Linguistics. 2009;59(New Perspectives in Mayan Linguistics):135-152

    Romulea tetragona M. P. de Vos

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    20.Romulea tetragona M.P. de Vos Fl. Pl. Africa 29: pl. 1136 (1952); J. S. African Bot., Suppl. 9: 259 (1972); Fl. S. Africa 7(2), fasc. 2: 65 (1983). — Type: de Vos 1569, South Africa, Western Cape, Ceres, Theronsberg Pass (holo-, NBG!). Plants 8-30 cm high, stem subterranean; corm with a crescent-shaped basal ridge. Leaves 4-6, basal, 4-winged, ciliate, 1.5-7 mm diam.; outer bracts with narrow membranous margins widening above and the apex membranous, hairy on the lower part, inner bracts with wide membranous margins. Flowers with hairy peduncles, rose to lilac or pink with dark bands around the yellowish cup, unscented, tepals elliptic to oblanceolate, 12-28 mm long; filaments 3-4 mm long, diverging at the tips, anthers 2-6 mm long, mostly dark brown, occasionally yellow, curving inward. Fruiting peduncles hairy, curved, later straightening. Flowering: Aug.-Sep. Romulea tetragona occurs on stony clay soils in the western karoo of Northern Cape Province and Cold Bokkeveld of Western Cape Province, extending from the Hantamsberg to Tweedside. It is readily recognized by its unusual winged leaves, hairy peduncles and pink flower. Originally placed with R. hirta by DE VOS (1972) in sect. Hirtae on account of their similar leaf structure, R. tetragona has the corm typical of subgenus Romulea sect. Ciliatae and is accordingly placed here.Published as part of Manning, John C. & Goldblatt, Peter, 2001, the Arabian Peninsula and Socotra including new species, biological notes, and a new infrageneric classification, pp. 59-108 in Adansonia (3) (3) 23 (1) on page 82, DOI: 10.5281/zenodo.518011

    Romulea sinispinosensis M. P. de Vos

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    30.Romulea sinispinosensis M.P. de Vos <p>J. S. African Bot., Suppl. 9: 147 (1972); Fl. S. Africa 7(2), fasc. 2: 35 (1983). — Type: <i>de Vos 2106,</i> South Africa, Western Cape, Vredendal, Doringbaai (holo-, NBG!).</p> <p>Plants 12-20 cm high, stem subterranean; corm obliquely flattened with a spathulate basal ridge. Leaves several, basal, narrowly 4-grooved, c. 1 mm diam.; outer bracts with narrow membranous margins, inner bracts membranous or submembranous with brown-spotted margins. Flowers cream to white with yellowish green cup, tepals elliptic, 10-12 mm long; filaments 3-4 mm long, anthers 3-4 mm long. Fruiting peduncles curved, later erect. Flowering: Aug.</p> <p>Originally known from a single collection from Doringbaai on the west coast of Western Cape Province south of Elandsbaai, <i>Romulea sinispinosensis</i> has more recently been collected east of Velddrift (sight record). It remains a poorly known species restricted to deep sands along the Western Cape coastal plain west of the Piketberg Mountains. <i>Romulea sinispinosensis</i> is a polyploid species with a diploid number of 2 <i>n</i> = c. 50 whereas the related <i>R</i>. <i>minutiflora</i> has 2 <i>n</i> = 26.</p>Published as part of <i>Manning, John C. & Goldblatt, Peter, 2001, the Arabian Peninsula and Socotra including new species, biological notes, and a new infrageneric classification, pp. 59-108 in Adansonia (3) (3) 23 (1)</i> on page 86, DOI: <a href="http://zenodo.org/record/5180119">10.5281/zenodo.5180119</a&gt

    The heavy quark expansion for inclusive semileptonic charm decays revisited

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    The Heavy Quark Expansion (HQE) has become an extremely powerful tool in flavor physics. For charm decays, where the expansion parameters alpha (s)(m(c)) and Lambda (QCD)/m(c) are bigger than for bottom decays, it remains to be seen if the HQE can be applied with similar success. Nevertheless, to make optimal use of the plethora of data already available and coming in the near future, a better understanding of HQE for charm decays is crucial. This paper discusses in detail how the HQE for charm decays is set up, what is the role of four-quark (weak annihilation) operators and how this compares to the well understood bottom decays. Subtleties concerning radiative corrections and the charm mass scheme are briefly discussed. An experimental study of the relevant HQE hadronic matrix elements will then show if the HQE expansion for charm converges well enough. Besides serving as an important cross check for inclusive B decays, in the end, this study might open the road for inclusive |V-cs| and |V-cd| extractions

    What is the future of European agencies?

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    Despite concerted efforts in recent years to define the position of agencies in the Union framework, a clear overall view of their role and powers in relation to the EU institutions and to the Member States is still lacking. Their hybrid character as part of the composite EU executive, and the fact that increasing powers are delegated to them, makes an understanding of the efficacy and accountability of agencies ever more important. Benefitting from both academic and practitioner insights from law, political and social sciences, this important book offers an in-depth analysis of the current challenges surrounding European agencies in terms of their design, autonomy, supervisory competence, and legal nature. Among the topics covered are the following: realities of the accountability mechanisms currently in place; impact of agency acts on the EU’s institutional balance of powers; agencies as global actors acting on behalf of Member States and EU external relations; agencies derived from former networks of national regulators; non-hierarchical ‘par’ nature of agencies vis-à-vis corresponding national authorities; agencies as crucial amalgams between EU institutions and Member States; effect of the Meroni doctrine; new financial supervisory agencies resulting from recent economic and financial crises; special role of telecommunications agencies; and intricacies of the relationship between agencies and the European Parliament. Because EU agencies are designed to facilitate the implementation of EU law at the national level, powers are increasingly conferred on them in order to ensure that rules are enforced effectively and uniformly. The time has come, however, to confront the many questions of legality and constitutionality that remain. This book responds to the vital as to the role and powers of agencies in relation to their manifold ‘principals’, the EU institutions and the Member States, and lays a firm foundation for managing the challenges ahead

    Wheat 2004 outdoor

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    This dataset contains the underlying data for the study: Evers JB, Vos J, Andrieu B, Struik PC. 2006. Cessation of tillering in spring wheat in relation to light interception and red : far-red ratio. Annals of Botany, 97: 649-658,  http://dx.doi.org/10.1093/aob/mcl020 Evers JB, Vos J, Fournier C, Andrieu B, Chelle M, Struik PC. 2007. An architectural model of spring wheat: evaluation of the effects of population density and shading on model parameterization and performance. Ecological Modelling 200: 308-320 http://dx.doi.org/10.1016/j.ecolmodel.2006.07.042 Chelle M, Evers JB, Combes D, Varlet-Grancher C, Vos J, Andrieu B. 2007. Simulation of the three-dimensional distribution of the red:far-red ratio within crop canopies. New Phytologist, 176: 223-234 http://dx.doi.org/10.1111/j.1469-8137.2007.02161.x Evers JB, Vos J, Chelle M, Andrieu B, Fournier C, Struik PC. 2007. Simulating the effects of localized red:far-red ratio on tillering in spring wheat (Triticum aestivum) using a three-dimensional virtual plant model. New Phytologist, 176: 325-336 http://dx.doi.org/10.1111/j.1469-8137.2007.02168.

    V-cb determination from inclusive b c decays: an alternative method

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    The determination of V-cb relies on the Heavy-Quark Expansion and the extraction of the non-perturbative matrix elements from inclusive b c decays. The proliferation of these matrix elements complicates their extraction at 1/mb4 and higher, thereby limiting the V-cb extraction. Reparametrization invariance links different operators in the Heavy-Quark expansion thus reducing the number of independent operators at 1/mb4 to eight for the total rate. We show that this reduction also holds for spectral moments as long as they are defined by reparametrization invariant weight-functions. This is valid in particular for the leptonic invariant mass spectrum (q(2)), i.e. the differential rate and its moments. Currently, V-cb is determined by fitting the energy and hadronic mass moments, which do not manifest this parameter reduction and depend on the full set of 13 matrix elements up to 1/mb4. In light of this, we propose an experimental analysis of the q(2) moments to open the possibility of a model-independent V-cb extraction from semileptonic decays including the 1/mb4 terms in a fully data-driven way
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