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  • 1995-1999  (900)
  • 1965-1969  (36)
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  • 1
    Call number: AWI Bio-18-91599-26
    In: Flora Reipublicae Popularis Sinicae, Tomus 26
    Type of Medium: Monograph available for loan
    Pages: 506 Seiten , Illustrationen
    ISBN: 7030048873
    Language: Chinese , Latin
    Note: Table of Contents: NYCTAGINACEAE. - 1. Pisonia L. - 1. P. aculeata L.. - 2. Ceodes J. et G. Forst. - 1. C. grandis (R. Br.) D. Q. Lu. - 2. C. umbellifera J. et G. Forst. - 3. Bougainvillea Comm. ex Juss. - 1. B. glabra Choisy. - 2. spectabilis Willd. - 4. Mirabilis L. - 1. M. jalapa L. - 5. Oxybaphus L' Her. ex Willd. - 1. O. himalaicus Edgew. - 6. Boerhavia L. - 1. B. diffusa L. - 2. B. erecta L.. - 3. B. crispa Heyne. - 7. Commicarpus Standl. - 1. C. chinensis (L. ) Heim. - 2. C. lantsangensis D. Q. Lu. - PHYTOLACCACEAE. - 1. Phytolacca L. - 1. Ph. acinosa Roxb. - 2. Ph. polyandra Batalin. - 3. Ph. japonica Makino. - 4. Ph. americana L. - 2. Rivina L. - 1. R. humilis L. - AIZOACEAE. - 1. Gisekia L. - 1. G. pharnaceoides L. - 2. Glinus L. - 1. Gl. lotoides L. - 2. Gl. oppositifolius (L.) A. DC. - 3. Mollugo L. - 1. M. nudicaulis Lam. - 2. M. cerviana (L.) Ser. - 3. M. stricta L. - 4. M. verticillata L. - 4. Sesuvium L. - 1. S. portulacastrum (L.) L. - 5. Trianthema L. - 1. Tr. portulacastrum L. - 6. Mesembryanthemum L. - 1. M. cordifolium L. f. - 2. M. crystallinum L. - 3. M. uncatum Salm-Dyck. - 4. M. edule L.. - 5. M. spectabile Haw. - 7. Tetragonia L. - 1. T . tetragonioides (Pall. ) Kuntze. - PORTULACACEAE. - 1. Portulaca L. - 1. P. oleracea L. - 2. P. pilosa L. - 3. P. grandiflora Hook - 4. P. quadrifida L. - 5. P. psammotropha Hance. - 6. P. insularis Hosokawa. - 2. Talinum Adans. - 1. T. paniculatum (Jacq.) Gaertn. - BASELLACEAE. - 1. Basella L. - 1. B. alba L. - 2. Anredera Juss. - 1. A. scandens (L.) Moq. - 2. A. cordifolia (Tenore) Steenis. - CARYOPHYLLACEAE. - I. Subfam. PARONYCHIOIDEAE Vierh. - 1. Trib. PARONYCHIEAE Pax. - 1. Gymnocarpos Forssk. - 1. G. przewalskii Maxim. - 2. Herniaria L. - 1. H. glabra L. - 2. H. polygama J. Gay. - 3. H. caucasica Rupr. - 2. Trib. SPERGULEAE Vierh. - 3. Spergula L. - 1. Sp. arvensis L. - 4. Spergularia (Pers.) J. et C. Presl. - 1. Sp. rubra (L.) J. et C. Presl. - 2. Sp. diandra (Guss.) Heldr. et Sart. - 3. Sp. media (L.) C. Presl. - 4. Sp. salina J. et C. Presl. - 3. Trib. POLYCARPEAE Pax. - 5. Drymaria Willd. ex Roem. et Schult. - 1. Dr. villosa Cham. et Schlecht. - 2. Dr. diandra Bl. - 6. Polycarpon Loefl. ex L. - 1. P. prostratum (Forssk.) Aschers. et Schweinw. - 7. Polycarpaea Lam. - 1. P. corymbosa (L.) Lam. - 2. P. gaudichaudii Gagnep. - ll. Subfam. ALSINOIDEAE Vierh. - 1. Subtrib. STELLARIINAE Aschers. et Graebn. - 8. Pseudostellaria Pax. - 1. Ps. sylvatica (Maxim.) Pax. - 2. Ps. heterophylla (Miq.) Pax. - 3. Ps. japonica (Korsh.) Pax. - 4. Ps. davidii (Franch.) Pax. - 5. Ps. rupestris (Turcz.) Pax. - 6. Ps. heterantha (Maxim.) Pax. - 7. Ps. himalaica (Franch.) Pax. - 8. Ps. maximowicziana (Franch. et Sav.) Pax. - 9. Myosoton Moench. - 1. M. aquaticum (L.) Moench. - 10. Cerastium L. - 1. C. cerastoides (L.) Britt. - 2. C. pauciflorum Stev. ex Ser. - 3. C. falcatum Bge. - 4. C. maximum L. - 5. C. lithospermifolium Fisch. - 6. C. dahuricum Fisch. - 7. C. perfoliaturn L. - 8. C. glomeratum Thuill. - 9. C. furcatum Cham. et Schlecht. - 10. C. fontanum Baumg. - 11. C. tianschanicum Schischk. - 12. C. limprichtii Pax et Hoffm. - 13. C. szechuense Williams. - 14. C. wilsonii Takeda. - 15. C. pusillum Ser. - 16. C. baischanense Y. C. Chu. - 17. C. arvense L. - 18. C. subpilosum Hayata. - 11. Stellaria L. - 1. Sect. Stellaria. - 1. Subsect. Stellaria. - 1. Ser. Petiolares Fenzl. - 1. St. bungeana Fenzl. - 2. St. nemorum L. - 3. St. nepalensis Majumdar et Vartak. - 4. St. arisanensis (Hayata) Hayata. - 5. St. wushanensis Williams. - 6. St. neglecta Weihe ex Bluff et Fingerh. - 7. St. media (L.) Cyr. - 8. St. apetala Ucria ex Roem. - 9. St. vestita Kurz. - 10. St. chinensis Regel. - 11. St. pilosa Franch. - 12. St. petiolaris Hand. -Mazz. - 13. St. lanipes C. Y. Wu et H. Chuang. - 2. Ser. Sessilifoliae Y. W. Tsui ex P. Ke. - 14. St. omeiensis C. Y. Wu et Y. W. Tsui ex P. Ke. - 15. St. reticulivena Hayata. - 16. St. infracta Maxim. - 17. St. gyirongensis L. H. Zhou. - 18. St. zangnanensis L. H. Zhou. - 19. St. tibetica Kurz. - 20. St. lanata Hook. f. ex Edgew. et Hook. f. - 21. St. patens D. Don. - 3. Ser. Dichotomae Roshev. - 22. St. dichotoma L. - 23. St. amblyosepala Schrenk. - 4. Ser. Holosteae Fenzl. - 24. St. henryi Williams. - 2. Subsect. Larbraea (St. Hil.) Fenzl. - 1. Ser. Foliaceo-bracteatae Schischk. - 25. St. ebracteata Korn. - 26. St. winkleri (Briq.) Schischk. - 27. St. crassifolia Ehrh. - 2. Ser. Discolares Schischk. - 28. St. discolor Turcz. - 29. St. gyangtseensis Williams. - 3. Ser. Uliginosae Schischk. - 30. St. pusilla E. Schmid. - 31. St. mainlingensis L. H. Zhou. - 32. St. depressa E. Schmid. - 33. St. uliginosa Murr. - 4. Ser. Gramineae Roshev. - 34. St. graminea L. - 35. St. brachypetala Bge. - 36. St. yunnanensis Franch. - 37. St. palustris Ehrh. ex Retz. - 38. St. salicifolia Y. W. Tsui ex P. Ke. - 39. St. dianthifolia Williams. - 40. St. longifolia Muehl. ex Willd. - 41. St. imbricata Bge. - 42. St. nipponica Ohwi. - 43. St. filicaulis Makino. - 5. Ser. Parviflorae Schischk. - 44. St. alaschanica Y. Z. Zhao. - 45. St. oxycoccoides Korn. - 46. St. uda Williams. - 47. St. souliei Williams. - 6. Ser. Pedunculares Schischk. - 48. St. soongorica Roshev. - 7. Ser. Umbellatae Schischk. - 49. St. irrigua Bge. - 50. St. parvi-umbellata Y. Z. Zhao. - 51. St. umbellata Turcz. - 52. St. suburnbellata Edgew.. - 2. Sect. Adenonerna (Bge.) Pax. - 53. St. arenaria Maxim.. - 54. St. cherleriae (Fisch. ex Ser.) Williams. - 55. St. petraea Bge. - 56. St. decumbens Edgew. - 57. St. congestiflora Hara. - 3. Sect. Fimbripetalurn Turcz. - 58. St. radians L. - 4. Sect. Leucostemma (Benth. ex G. Don f.) Pax. - 59. St. rnartjanovii Krylov. - 5. Sect. Schizothecium Fenzl. - 60. St. monosperma Buch. -Ham. ex D. Don. - 61. St. ovatifolia (Mizushima) Mizushima. - 62. St. delavayi Franch. - 6. Sect. Oligosperma Boiss. - 63. St. bistyla Y. Z. Zhao. - 64. St. strongylosepala Hand.-Mazz. - 12. Holosteum L. - 1. H. umbellatum L. - 13. Arenaria L. - 1. Subgen. Arenaria. - 1. Sect. Arenaria. - 1. A. serpyllifolia L. - 2. Sect. Rotundifoliae McNeill. - 2. A. orbiculata Royle ex. Edgew. et Hook f. - 3. A. neelgerrensis Wight et Arn. - 3. Sect. Rariflorae Williams. - 4. A. monosperma Williams. - 5. A. puranensis L. H. Zhou. - 4. Sect. Compressae McNeill. - 6. A. compressa McNeill. - 2. Subgen. Eremogone (Fenzl) Fenzl. - 1. Sect. Monogone Maxim. - 7. A. potaninii Schischk. - 2. Sect. Capillares McNeill. - 8. A. juncea M. Bieb. - 9. A. capillaris Poir. - 10. A. acicularis Williams ex Keissler. - 11. A. grüningiana Pax et Hoffm. - 12. A. formosa Fisch. ex Ser. - 13. A. haitzeshanensis Y. W. Tsui. - 3. Sect. Sclerophyllae (Boiss.) McNeill. - 14. A. griffithii Boiss. - 15. A. androsacea Grub. - 3. Subgen. Eremogoneastrum Williams. - 16. A. brevipetala Y. W. Tsui et L. H. Zhou. - 17. A. baxoiensis L. H. Zhou. - 18. A. kumaonensis Maxim. - 19. A. kansuensis Maxim. - 20. A. ischnophylla Williams. - 21. A. roborowskii Maxim. - 22. A. lancangensis L. H. Zhou. - 23. A. gerzeensis L. H. Zhou. - 24. A. qinghaiensis Y. W. Tsui et L. H. Zhou. - 25. A. aksayqingensis L. H. Zhou. - 26. A. pulvinata Edgew. - 27. A. shannanensis L. H. Zhou. - 28. A. edgeworthiana Majumdar. - 29. A. bryophylla Fernald. - 30. A. zadoiensis L. H. Zhou. - 31. A. taibaishanensis L. H. Zhou. - 32. A. festucoides Benth. - 4. Subgen. Dolophragma (Fenzl) McNeill. - 33. A. przewalskii Maxim. - 34. A. smithiana Mattf. - 35. A. oreophila Hook. f. ex Edgew. et Hook. f. - 36. A. densissima Wall. ex Edgew. et Hook. f. - 37. A. polytrichoides Edgew. ex. Edgew. et Hook f. - 5. Subgen. Solitaria McNeill. - 38. A. ciliolata Edgew. - 39. A. ramellata Williams. - 40. A. stracheyi Edgew. - 41. A. rhodantha Pax et Ho , Text in chinesischer Schrift , Überschriften in lateinischer Sprache
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  • 2
    Electronic Resource
    Electronic Resource
    s.l. : American Chemical Society
    The @journal of organic chemistry 31 (1966), S. 1447-1451 
    ISSN: 1520-6904
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
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  • 3
    Electronic Resource
    Electronic Resource
    s.l. : American Chemical Society
    Biochemistry 34 (1995), S. 16764-16769 
    ISSN: 1520-4995
    Source: ACS Legacy Archives
    Topics: Biology , Chemistry and Pharmacology
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  • 4
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Physics of Plasmas 6 (1999), S. 1631-1635 
    ISSN: 1089-7674
    Source: AIP Digital Archive
    Topics: Physics
    Notes: The behavior of Lagrangian cells in expanding recombination plasma from laser-irradiated carbon fiber are studied. Approximate expressions of electron density, electron temperature, and fractional population of bare nuclei, the escape probability of 2-1 transition and gain for 3d5/2–2p3/2 transition in H-like C ions obtained in this paper are in agreement with numerical simulation. © 1999 American Institute of Physics.
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  • 5
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Physics of Plasmas 5 (1998), S. 4160-4162 
    ISSN: 1089-7674
    Source: AIP Digital Archive
    Topics: Physics
    Notes: Using the reductive perturbation method, the carrier wave modulation of ion acoustics waves in inhomogeneous plasma is investigated. It is shown that such a process can be described by a Nonlinear Schrödinger-type equation (NLS-type) equation. © 1998 American Institute of Physics.
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  • 6
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Physics of Plasmas 6 (1999), S. 4343-4348 
    ISSN: 1089-7674
    Source: AIP Digital Archive
    Topics: Physics
    Notes: A one-dimensional Lagrangian magneto-hydrodynamics code coupled to an atomic kinetics code was developed. In this code, the ablation and ionization of the wall material were taken into account, the coupled rate equations were solved by using the matrix-block method, and the effect of the reabsorption of the resonant lines was calculated by using an approximate expression of the escape-factor in a cylindrically expanding plasma. The numerical results obtained from this code on a discharge-pumped J=0−1 transition 46.9 nm laser line in Ne-like Ar were in good agreement with experimental observations. The physical schemes in the 46.9 nm laser line were studied. © 1999 American Institute of Physics.
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  • 7
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Review of Scientific Instruments 68 (1997), S. 3666-3668 
    ISSN: 1089-7623
    Source: AIP Digital Archive
    Topics: Physics , Electrical Engineering, Measurement and Control Technology
    Notes: A commercial high numerical-aperture microscope objective is designed in terms of the sine condition which is needed for two-dimensional space-invariant imaging. The axial trapping efficiency generated by an objective obeying the sine condition is found to be approximately up to 50% smaller than the prediction for an objective obeying the tangent condition which has been currently used in the ray optics theory for trapping force calculations. Our result is in good agreement with the measured value of the trapping efficiency. © 1997 American Institute of Physics.
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  • 8
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Review of Scientific Instruments 68 (1997), S. 3877-3882 
    ISSN: 1089-7623
    Source: AIP Digital Archive
    Topics: Physics , Electrical Engineering, Measurement and Control Technology
    Notes: Major improvements have been made on the sensitive high pressure electron paramagnetic resonance (EPR) system developed previously in 1978 at this laboratory. These changes allow low temperature measurements and provide a more stable signal. The high pressure EPR cell is placed inside a vacuum chamber to provide thermal isolation, so that the system may be cooled by a closed cycle refrigerator to temperatures between 45 and 60 K, depending on the energy input to the modulation coil. The combination of high pressure and low temperature greatly expands the thermodynamic range over which EPR measurements can be made. An improved and effective method of forming a conductive surface to define the microwave cavity is presented. This method successfully avoids the deterioration of the sapphire's polished surface which causes premature breaking of the sapphire high pressure anvil, and therefore significantly improves the reliability of the system at high pressure. Other modifications to the system, such as the microwave coupling method, the modulation coil, and selecting of a hydrostatic pressure fluid, are discussed. EPR measurements on BaTiO3 have been made at temperatures ranging from 233 to 353 K and pressures from 0 to 4.4 GPa. High quality signals can be realized in the entire pressure and temperature range. © 1997 American Institute of Physics.
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  • 9
    Electronic Resource
    Electronic Resource
    s.l. : American Chemical Society
    Journal of the American Chemical Society 90 (1968), S. 234-237 
    ISSN: 1520-5126
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
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  • 10
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Journal of Applied Physics 77 (1995), S. 3581-3583 
    ISSN: 1089-7550
    Source: AIP Digital Archive
    Topics: Physics
    Notes: A 500 A(ring) erbium (Er) film was deposited on potassium titanyl phosphate (KTiOPO4 or KTP) by electron-beam evaporation. The doping of Er into KTP was induced by mega-electron-volt Ar+ with different doses. The doping amount was investigated by Rutherford backscattering of 3.0 MeV He+. The results show that the doping concentrations of Er in KTP were 2.88 and 1.88 at. % induced by 2.0 and 3.0 MeV Ar+ with the dose of 2×1016 ions/cm2 at room temperature, respectively. Perhaps the present result can provide an important approach not only for the laser and waveguide laser fabrication, but also for the high-concentration dopants (atomic percent levels) into KTiOPO4 at room temperature. © 1995 American Institute of Physics.
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