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1

Bernardes, Marta, Anna Rauhaus, Clara Michel, et al. "Larval development and breeding ecology of Ziegler's Crocodile Newt, Tylototriton ziegleri Nishikawa, Matsui and Nguyen, 2013 (Caudata: Salamandridae), compared to other Tylototriton representatives." Amphibian & Reptile Conservation 11, no. 1 (2017): 72–87. https://doi.org/10.5281/zenodo.13154423.

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Bernardes, Marta, Rauhaus, Anna, Michel, Clara, Pham, Cuong The, Nguyen, Truong Quang, Le, Minh Duc, Pasmans, Frank, Bonkowski, Michael, Ziegler, Thomas (2017): Larval development and breeding ecology of Ziegler's Crocodile Newt, Tylototriton ziegleri Nishikawa, Matsui and Nguyen, 2013 (Caudata: Salamandridae), compared to other Tylototriton representatives. Amphibian & Reptile Conservation (e138) 11 (1): 72-87, DOI: 10.5281/zenodo.13154423
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2

Allen, R. L., and T. Raine. "Response to Ziegler and Ziegler." Rheumatology 46, no. 3 (2007): 556–57. http://dx.doi.org/10.1093/rheumatology/kel391.

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3

Goodman, Katherine R. ""ICH BIN DIE DEUTSCHE REDLICHKEIT"." Daphnis 29, no. 1-2 (2000): 307–54. http://dx.doi.org/10.1163/18796583-90000709.

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Christiane Mariane von Ziegler wrote these 33 letters between 1731 and 1733. They illuminate both her character and particular events in her life during the years between her invitation to join the Deutsche Gesellschaft and her coronation as poet laureate. Ziegler actively participated in some of the intrigues surrounding the first Professor of German Rhetoric in Halle, Johann Ernst Philippi. Her involvement in these intrigues provoked Philippi to acts of revenge that ultimately damaged Ziegler's own reputation. Orchestrating much of the mischief from afar were the Liscow brothers and Hagedorn, opponents of the gallant and heroic style in literature. The letters are reprinted her for the first time since 1792.
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4

Schreiner, Josef. "Joseph Ziegler †." Zeitschrift für die Alttestamentliche Wissenschaft 101, no. 1 (1989): 1–3. http://dx.doi.org/10.1515/zatw.1989.101.1.1.

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5

Walther, D. "Ziegler Catalysts." Zeitschrift für Physikalische Chemie 194, Part_2 (1996): 281. http://dx.doi.org/10.1524/zpch.1996.194.part_2.281.

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6

Weddige, Karsten. "Willi Ziegler." Paläontologische Zeitschrift 77, no. 1 (2003): 1–21. http://dx.doi.org/10.1007/bf03004557.

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7

Kurniawan, Adhadi, Raka Thareq Azis Pohan, and Indra Agustian. "Sistem Kendali Suhu Prototipe Mesin Pengering Biji Kopi Dengan Metode PID dan IOT Monitoring." JURNAL AMPLIFIER : JURNAL ILMIAH BIDANG TEKNIK ELEKTRO DAN KOMPUTER 13, no. 1 (2023): 10–17. http://dx.doi.org/10.33369/jamplifier.v13i1.27437.

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Proses pengeringan biji kopi yang dilakukan petani kopi masih banyak dilakukan secara tradisional di lapangan terbuka atau di jalanan. Dan juga proses pengeringan biji kopi secara tradisional masih dipengaruhi faktor cuaca yang tidak menentu sehingga menyebabkan lamanya proses pengeringan. Dengan prototipe mesin pengering biji kopi menggunakan sensor suhu DHT22 dan pemanas DC serta sistem kendali suhu metode PID Ziegler Nichols dapat melakukan proses pengeringan dengan suhu optimal antara 50 – 60 C secara konstan. Hasil pengujian dengan metode Ziegler Nichols didapatkan nilai konstanta PID yang optimal dengan nilai Kp sebesar 33,6, nilai Ki sebesar 0,336 , dan nilai Kd sebesar 1,34. Dimana suhu optimal didapat selama 900 detik setelah proses pengeringan dimulai. Sedangkan pengeringan tanpa kendali PID yang membutuhkan waktu 1400 detik. Hasil pengujian dengan menggunakan PID Ziegler Nichols menunjukkan bahwa pengeringan membutuhkan waktu jauh lebih cepat untuk mencapai suhu optimal dibandingkan pengeringan tanpa kendali PID. Data dari hasil pengukuran suhu yang dikendalikan dengan metode PID Ziegler Nichols dapat dimonitoring dengan website Thingspeak.
 Kata Kunci: Mesin Pengering Biji kopi, PID, Ziegler Nichols
 
 ABSTRACK
 The process of drying coffee beans by coffee farmers is still mostly done traditionally in open fields or on the streets. And also the traditional process of drying coffee beans is still influenced by erratic weather factors, which causes the drying process to take a long time. With a prototype coffee bean drying machine using a DHT22 temperature sensor and DC heating and a temperature control system PID Ziegler Nichols method can carry out the drying process with an optimal temperature between 50 – 60 C constantly. The test results with the Ziegler Nichols method obtained the optimal PID constant value with a Kp value of 33.6, a Ki value of 0.336 , and a Kd value of 1.34. Where the optimal temperature is obtained for 900 seconds after the drying process begins. Meanwhile, drying without PID control takes 1400 seconds. Test results using PID Ziegler Nichols show that drying takes much faster time to reach the optimal temperature than drying without PID control. Data from the results of temperature measurements controlled by the Ziegler Nichols PID method can be monitored on the Thingspeak website.
 Key Words : Coffee Bean Dryer, PID, Ziegler Nichols
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8

Zellmer, William A. "Dear Mr. Ziegler." American Journal of Health-System Pharmacy 45, no. 1 (1988): 89. http://dx.doi.org/10.1093/ajhp/45.1.89.

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9

SHIONO, Takeshi. "Ziegler-Natla Catalysts." Kobunshi 56, no. 1 (2007): 16–17. http://dx.doi.org/10.1295/kobunshi.56.16.

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10

Sivaram, S. "The Ziegler catalysts." Resonance 22, no. 11 (2017): 985–1006. http://dx.doi.org/10.1007/s12045-017-0567-x.

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11

Stoy, Manfred. "Otto Richard Ziegler †." Mitteilungen des Instituts für Österreichische Geschichtsforschung 121, no. 1 (2013): 261–62. http://dx.doi.org/10.7767/miog.2013.121.1.261.

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12

Adam, C., R. Heuer, H. Irschik, and F. G. Rammerstorfer. "Congratulation: Franz Ziegler." ZAMM 88, no. 2 (2008): 84–85. http://dx.doi.org/10.1002/zamm.200888084.

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13

Berger, M. N., and T. H. Boultbee. "Ziegler-type polyethylene." Journal of Applied Chemistry 9, no. 9 (2007): 490–500. http://dx.doi.org/10.1002/jctb.5010090907.

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14

Kočí, Tomáš. "Václav Ziegler Septagenarian." Acta Musei Nationalis Pragae Series B 70, no. 3-4 (2014): 129–30. https://doi.org/10.14446/AMNP.2014.129.

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15

Ramadhan, Novalliansyah Ramadhan. "Simulasi Kontrol PID Ziegler-Nichols pada Sistem Penghancuran Batu dengan Motor Induksi 3 Fasa 20HP." Jurnal Elektronika dan Otomasi Industri 11, no. 1 (2024): 227–37. http://dx.doi.org/10.33795/elkolind.v11i1.5146.

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Penelitian ini bertujuan untuk mengembangkan pengendalian otomatis pada mesin crusher batu koral menggunakan metode PID Ziegler-Nichols. Mesin crusher otomatis diatur dengan parameter PID yang dihasilkan dari metode Ziegler-Nichols, yaitu Kp=0.0957, Ki=0.9643, dan Kd=0.0024, dengan respons stabil setiap 1 detik setelah terjadi osilasi. Metode PID dipilih karena kemampuannya untuk mengontrol sistem secara otomatis dengan mengkombinasikan proporsional, integral, dan derivatif dari kesalahan sistem. Metode Ziegler-Nichols digunakan untuk menentukan parameter PID dengan melakukan uji respons terhadap sistem dan mengidentifikasi parameter yang optimal. Hasil penelitian menunjukkan bahwa metode PID Ziegler-Nichols memberikan pengendalian yang efisien dan stabil pada mesin crusher, meningkatkan kinerja dan keandalan proses penghancuran batu koral secara keseluruhan. Penelitian ini memberikan kontribusi penting dalam pengembangan sistem pengendalian otomatis untuk industri pemecahan batu koral yang membutuhkan tingkat presisi dan efisiensi yang tinggi.
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16

Ahmada, Ezra Adillafasyah, Afif Zuhri Arfianto, Purwidi Asri, et al. "ANALISIS PERANGKAT REFLOW MESIN SOLDER BERBASIS KOMPOR LISTRIK MENGGUNAKAN METODE PID ZIEGLER-NICHLOS UNTUK PEMBUATAN ALAT NAVIGASI AIS." Jurnal 7 Samudra 9, no. 1 (2024): 31–36. https://doi.org/10.54992/7samudra.v9i1.178.

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Penelitian ini menganalisis performa mesin solder berbasis kompor listrik yang diatur menggunakan metode PID (Proportional-Integral-Derivative) Ziegler-Nichols. Penggunaan kompor listrik sebagai sumber panas menawarkan kontrol suhu yang presisi dan efisiensi energi. Untuk mencapai kestabilan dan akurasi suhu optimal, metode PID Ziegler-Nichols dipilih karena kemampuannya menentukan parameter kontrol optimal melalui prosedur sistematis yang efektif dalam berbagai aplikasi industri. Penelitian ini melibatkan perancangan dan pengembangan mesin solder, implementasi algoritma PID Ziegler-Nichols untuk pengaturan suhu, serta pengujian dan evaluasi performa mesin dalam berbagai kondisi operasi. Hasil penelitian menunjukkan bahwa mesin solder dengan pengaturan PID Ziegler-Nichols mencapai kontrol suhu lebih akurat dan stabil dibandingkan metode konvensional. Penelitian ini berkontribusi pada pengembangan teknologi mesin solder yang lebih efisien dan ramah lingkungan serta menjadi referensi untuk pengembangan sistem kontrol suhu pada mesin industri lainnya.
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17

Nugraha, Mahendra Budi, and Raden Sumiharto. "Penerapan Sistem Kendali PID pada Antena Pendeteksi Koordinat Posisi UAV." IJEIS (Indonesian Journal of Electronics and Instrumentation Systems) 5, no. 2 (2015): 187. http://dx.doi.org/10.22146/ijeis.7642.

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AbstrakPada penelitian ini telah diterapkan sebuah sistem kendali Proporsional-Integral-Derivatif (PID) pada antena pendeteksi koordinat posisi pesawat udara tanpa awak. Sistem kendali PID pada antena pendeteksi digunakan pada kendali gerak horizontal dan vertikal. Nilai acuan kendali PID untuk gerak horizontal adalah sudut azimuth antara antena dan UAV. Sudut tersebut didapatkan dari metode azimuth antara dua buah titik koordinat. Nilai acuan kendali PID untuk gerak vertikal adalah sudut elevasi yang didapat dari metode Haversine Formula dan Sinus Trigonemetri antara jarak dua titik koordinat terhadap ketinggian UAV. Metode tuning PID yang digunakan untuk memperoleh konstanta pengendali PID adalah metode Ziegler-Nichols dengan metode osilasi dan tabel penalaran sistem kendali Ziegler-Nichols.Hasil yang diperoleh dari penelitian ini berupa penerapan sistem kendali PID berdasarkan metode Ziegler-Nichols. Sistem kendali berdasarkan tabel penalaran Ziegler-Nichols divariasikan tiga jenis sistem kendali yaitu P, PI, dan PID. Sistem kendali PD juga diterapkan berdasarkan tabel penalaran Ziegler-Nichols dengan pengendali integral diatur bernilai 0. Sistem kendali yang memiliki respon paling baik adalah sistem kendali PD dengan nilai Kp = 11,375 dan Kd = 0,372531 untuk kendali azimuth sedangkan kendali elevasi pada nilai Kp = 3,41 dan Kd = 0,111464. Respon yang dihasilkan kendali azimuth sebesar 0,32 detik dan kendali elevasi sebesar 0,34 detik. Kata kunci—PID, Antena Pendeteksi, Servo, UAV Abstract In this project has been implemented a PID control system on antenna tracker of unmanned aerial vehicle coordinates. PID control system on antena tracker to be used on horizontal and vertikal motion control. The setpoint of PID controller for horizontal motion is azimuth’s angle between antenna and UAV. The angle produced by azimuth’s method between two coordinates. The setpoint of PID controller for vertical motion is elevasi’s angle that produced by haversine-formula’s method and Sinus Trigonometry between distance two coordinates toward altitude of UAV. Tuning of PID controller was calculated by Ziegler-Nichols’s method with oscillation’s method and reasoning table of Ziegler-Nichols.The result from this project is implementation PID control system with Ziegler-Nichols’s method. There ara 3 variations in Ziegler-Nichols’s table, that are P, PI, and PID control system. The PD control system also implemented with integral’s control set on 0. The control system that has a good response is PD control system with Kp = 11,375 and Kd = 0,372531 on azimuth’s control whereas elevasi’s control with Kp = 3,41 and Kd = 0,111464. Response that produced by azimuth’s control is 0,32 second and elevasi’s control is 0,34 second. Keywords—PID, Antenna Tracker, Servo, UAV
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18

Marcja, A., M. Prest, and C. Toffalori. "The torsionfree part of the Ziegler spectrum of RG when R is a Dedekind domain and G is a finite group." Journal of Symbolic Logic 67, no. 3 (2002): 1126–40. http://dx.doi.org/10.2178/jsl/1190150153.

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For every ring S with identity, the (right) Ziegler spectrum of S, Zgs, is the set of (isomorphism classes of) indecomposable pure injective (right) S-modules. The Ziegler topology equips Zgs with the structure of a topological space. A typical basic open set in this topology is of the formwhere φ and ψ are pp-formulas (with at most one free variable) in the first order language Ls for S-modules; let [φ/ψ] denote the closed set Zgs - (φ/ψ). There is an alternative way to introduce the Ziegler topology on Zgs. For every choice of two f.p. (finitely presented) S-modules A, B and an S-module homomorphism f: A → B, consider the set (f) of the points N in Zgs such that some S-homomorphism h: A → N does not factor through f. Take (f) as a basic open set. The resulting topology on Zgs is, again, the Ziegler topology.The algebraic and model-theoretic relevance of the Ziegler topology is discussed in [Z], [P] and in many subsequent papers, including [P1], [P2] and [P3], for instance. Here we are interested in the Ziegler spectrum ZgRG of a group ring RG, where R is a Dedekind domain of characteristic 0 (for example R could be the ring Z of integers) and G is a finite group. In particular we deal with the R-torsionfree points of ZgRG.The main motivation for this is the study of RG-lattices (i.e., finitely generated R-torsionfree RG-modules).
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19

Xing, Xue Feng, and Hong Zuo Li. "Modeling and Simulation the Semiconductor Lasers Diode Temperature Controlling." Advanced Materials Research 338 (September 2011): 706–8. http://dx.doi.org/10.4028/www.scientific.net/amr.338.706.

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A semiconductor Laser Diode (LD) temperature control system based on Ziegler-Nichols tuning PID was introduced. According to the requirement of temperature stability in the LD system, the parameter auto-tuning Ziegler-Nichols algorithm and analog circuit was adopted to carry on the control of temperature.
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20

De Paor, Annraoi M. "A Fiftieth Anniversary Celebration of The Ziegler–Nichols PID Controller." International Journal of Electrical Engineering & Education 30, no. 4 (1993): 303–16. http://dx.doi.org/10.1177/002072099303000404.

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A fiftieth anniversary celebration of the Ziegler–Nichols PID controller The Ziegler–Nichols PID controller tuning rules (November 1942) are addressed anew in the frequency domain. They are shown to guarantee asymptotic stability for processes considered, with a phase margin of about 25°. Refinements and interrelationship are explored.
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21

Lubich, Gerhard, and Lorenz Fries. "Rezension von: Fries, Lorenz, Von den Anfängen bis Rugger 1125." Württembergisch Franken 79 (August 15, 2023): 512–14. http://dx.doi.org/10.53458/wfr.v79i.7307.

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Lorenz Fries, Chronik der Bischöfe von Würzburg 742-1495. Bd. I: Von den Anfängen bis Rugger 1125, hrsg. v. U. Wagner u. W. Ziegler, bearb. v. Th. Heiler, A. Tittmann u. W. Ziegler (Fontes Herbipolenses. Editionen und Studien aus dem Stadtarchiv Würzburg, Bd. 1), Würzburg 1992. 315 S.
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22

Abidaoun H. shallal. "COMPARISON PERFORMANCE OF DIFFERENT PID CONTROLLERS FOR DC MOTOR." Diyala Journal of Engineering Sciences 5, no. 1 (2012): 121–230. http://dx.doi.org/10.24237/djes.2012.05118.

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Speed control of Dc motors is an important issue also shorter settling time is desired . In this work at first a parallel PID compensator which adjusted by Ziegler – Nichols is designed but Ziegler – Nichols don't apply directly for all structures of PID controller ,drive equations to applied Ziegler - Nichols for this configuration of PID compensator . The controller design process requirements are discussed by programming . Then the comparison between the PID configurations shows that the PID controller significantly reduced the overshoot , settling time and has the best performance encountering with system uncertainties . According to the matlab programming version 7.10 results , the D*PI controller has better performance than the PID configuration
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23

Parise, Martina, Sergio Di Molfetta, Roberta Teresa Graziano, et al. "A Head-to-Head Comparison of Two Algorithms for Adjusting Mealtime Insulin Doses Based on CGM Trend Arrows in Adult Patients with Type 1 Diabetes: Results from an Exploratory Study." International Journal of Environmental Research and Public Health 20, no. 5 (2023): 3945. http://dx.doi.org/10.3390/ijerph20053945.

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Background: Continuous glucose monitoring (CGM) users are encouraged to consider trend arrows before injecting a meal bolus. We evaluated the efficacy and safety of two different algorithms for trend-informed bolus adjustments, the Diabetes Research in Children Network/Juvenile Diabetes Research Foundation (DirectNet/JDRF) and the Ziegler algorithm, in type 1 diabetes. Methods: We conducted a cross-over study of type 1 diabetes patients using Dexcom G6. Participants were randomly assigned to either the DirectNet/JDRF or the Ziegler algorithm for two weeks. After a 7-day wash-out period with no trend-informed bolus adjustments, they crossed to the alternative algorithm. Results: Twenty patients, with an average age of 36 ± 10 years, completed this study. Compared to the baseline and the DirectNet/JDRF algorithm, the Ziegler algorithm was associated with a significantly higher time in range (TIR) and lower time above range and mean glucose. A separate analysis of patients on CSII and MDI revealed that the Ziegler algorithm provides better glucose control and variability than DirectNet/JDRF in CSII-treated patients. The two algorithms were equally effective in increasing TIR in MDI-treated patients. No severe hypoglycemic or hyperglycemic episode occurred during the study. Conclusions: The Ziegler algorithm is safe and may provide better glucose control and variability than the DirectNet/JDRF over a two-week period, especially in patients treated with CSII.
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24

Ziegler, Thomas, Vinh Quang Luu, Thanh Tung Nguyen, et al. "Rediscovery of Andrea's keelback, Hebius andreae (Ziegler & Le, 2006): First country record for Laos and phylogenetic placement." Revue suisse de Zoologie 126, no. 1 (2019): 61–71. https://doi.org/10.5281/zenodo.2619520.

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Ziegler, Thomas, Luu, Vinh Quang, Nguyen, Thanh Tung, Ha, Ngoan Van, Ngo, Hanh Thi, Le, Minh Duc, Nguyen, Truong Quang (2019): Rediscovery of Andrea's keelback, Hebius andreae (Ziegler & Le, 2006): First country record for Laos and phylogenetic placement. Revue suisse de Zoologie 126 (1): 61-71, DOI: 10.5281/zenodo.2619520
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25

Biblische Zeitschrift, Editors. "Professor Dr. Joseph Ziegler †." Biblische Zeitschrift 33, no. 1 (1989): 160. http://dx.doi.org/10.30965/25890468-03301034.

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26

Spisak, April. "Worser by Jennifer Ziegler." Bulletin of the Center for Children's Books 75, no. 6 (2022): 206. http://dx.doi.org/10.1353/bcc.2022.0102.

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27

Seldon, Anthony. "Anatomising Wilson: Philip Ziegler." Contemporary Record 7, no. 2 (1993): 338–59. http://dx.doi.org/10.1080/13619469308581254.

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28

Pilgram, Arno. "Ziegler: Die Barbaren kommen." Neue Kriminalpolitik 10, no. 3 (1998): 40. http://dx.doi.org/10.5771/0934-9200-1998-3-40.

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29

McCleskey, Sarah E. "THE PHARAOHS. Christiane Ziegler." Art Documentation: Journal of the Art Libraries Society of North America 22, no. 2 (2003): 47. http://dx.doi.org/10.1086/adx.22.2.27949268.

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30

Patel, Vishakha Vijay. "Ziegler-Nichols Tuning Method." Resonance 25, no. 10 (2020): 1385–97. http://dx.doi.org/10.1007/s12045-020-1058-z.

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31

Sayir, Mahir. "Prof. Dr. Hans Ziegler." ZAMP Zeitschrift f�r angewandte Mathematik und Physik 36, no. 5 (1985): I. http://dx.doi.org/10.1007/bf00960375.

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32

Cavallo, L., J. M. Ducéré, Rosalisa Fedele, et al. "Ziegler-Natta catalytic systems." Journal of Thermal Analysis and Calorimetry 91, no. 1 (2007): 101–6. http://dx.doi.org/10.1007/s10973-007-8412-1.

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33

Lanford, William A. "Dr. James F. Ziegler." Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 99, no. 1-4 (1995): xiii—xiv. http://dx.doi.org/10.1016/0168-583x(95)80077-8.

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34

Adam, Christoph, Alexander K. Belyaev, Hans Irschik, Rudolf Heuer, Franz G. Rammerstorfer, and Wilhelm Schneider. "Franz Ziegler, 1937-2016." ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik 96, no. 5 (2016): 536–37. http://dx.doi.org/10.1002/zamm.201609655.

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35

Hafner, Klaus. "Hommage an Karl Ziegler." Nachrichten aus Chemie, Technik und Laboratorium 47, no. 1 (1999): 24–29. http://dx.doi.org/10.1002/nadc.19990470110.

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36

Zörlein, Caroline. "Die Karl-Ziegler-Stiftung." Nachrichten aus der Chemie 56, no. 9 (2008): 941–42. http://dx.doi.org/10.1002/nadc.200860991.

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Ziegler, K. "Wer ist's?- Karl Ziegler." Nachrichten aus Chemie und Technik 4, no. 6 (2010): 78–79. http://dx.doi.org/10.1002/nadc.19560040603.

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38

Short, G. A., and E. C. Shokal. "A novel Ziegler catalyst." Journal of Polymer Science Part B: Polymer Letters 3, no. 10 (2003): 859–62. http://dx.doi.org/10.1002/pol.1965.110031014.

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39

Ziegler, Thomas, Patrick David, Tim N. Ziegler, Cuong T. Pham, Truong Q. Nguyen, and Minh D. Le. "Morphological and molecular review of Jacob's Mountain Stream Keelback Opisthotropis jacobi Angel & Bourret, 1933 (Squamata: Natricidae) with description of a sibling species from northern Vietnam." Zootaxa 4374, no. 4 (2018): 476–96. https://doi.org/10.11646/zootaxa.4374.4.2.

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Ziegler, Thomas, David, Patrick, Ziegler, Tim N., Pham, Cuong T., Nguyen, Truong Q., Le, Minh D. (2018): Morphological and molecular review of Jacob's Mountain Stream Keelback Opisthotropis jacobi Angel & Bourret, 1933 (Squamata: Natricidae) with description of a sibling species from northern Vietnam. Zootaxa 4374 (4): 476-496, DOI: 10.11646/zootaxa.4374.4.2
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40

Hadi, Shaima M. "Stopping Power and Range for Proton Interaction with Lymph Tissues." International Journal of Environment, Engineering and Education 3, no. 3 (2021): 110–14. http://dx.doi.org/10.55151/ijeedu.v3i3.57.

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In this paper, we calculated the mass stopping power (in MeV cm2/g) and the range (cm) of proton in one of the types of body tissues (lymph), from 1 Kev to 200 MeV energy range. They are using the Bethe and Ziegler equations, SRIM program (version 2013) and Ziegler (Vol. 3) data by considering the tissue composed of several elements, so the atomic number (Z) and atomic weight (A) for the component in the tissue are meaning. The calculation results show that the Ziegler equation gives better results than using the Bethe equation. However, in terms of the loss of proton energy in the tissue, the four methods used are approximately the same.
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41

Hadi, Shaima M. "Stopping Power and Range for Proton Interaction with Lymph Tissues." International Journal of Environment, Engineering & Education 3, no. 3 (2021): 110–14. https://doi.org/10.5281/zenodo.5842881.

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  In this paper, we calculated the mass stopping power (in MeV cm2/g) and the range (cm) of proton in one of the types of body tissues (lymph), from 1 Kev to 200 MeV energy range. They are using the Bethe and Ziegler equations, SRIM program (version 2013) and Ziegler (Vol. 3) data by considering the tissue composed of several elements, so the atomic number (Z) and atomic weight (A) for the component in the tissue are meaning. The calculation results show that the Ziegler equation gives better results than using the Bethe equation. However, in terms of the loss of proton energy in the tissue, the four methods used are approximately the same.  
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42

Thomas, Ziegler, N. Ziegler Tim, Peusquens Julia, et al. "Expanded morphological definition and molecular phylogenetic position of the Tam Dao mountain stream keelback Opisthotropis tamdaoensis (Squamata: Natricidae) from Vietnam." Revue suisse de Zoologie 124, no. 2 (2017): 377–89. https://doi.org/10.5281/zenodo.893551.

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Thomas Ziegler, Tim N. Ziegler, Julia Peusquens, Patrick David, Thanh N. Vu, Cuong T. Pham, Truong Q. Nguyen, Minh D. Le (2017): Expanded morphological definition and molecular phylogenetic position of the Tam Dao mountain stream keelback Opisthotropis tamdaoensis (Squamata: Natricidae) from Vietnam. Revue suisse de Zoologie 124 (2): 377-389, DOI: 10.5281/zenodo.893551
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43

Yue, Huan, Xin Yan, Chenghan Huang, et al. "Preparation of High-Performance Polyethylene Nanocomposites with Oleic Acid–Siloxene-Supported Ziegler–Natta Catalysts." Molecules 29, no. 15 (2024): 3662. http://dx.doi.org/10.3390/molecules29153662.

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The addition of two-dimensional inorganic nanomaterials can effectively enhance the properties of polyethylene (PE). In the present study, a series of high-performance PE/oleic acid (OA)–siloxene nanocomposites were prepared by in situ polymerization using OA–siloxene-supported Ziegler–Natta catalysts. Compared with the conventional Ziegler–Natta catalyst, the polymerization activity of the OA–siloxene-supported Ziegler–Natta catalyst was enhanced to 100 kg/mol-Ti•h, an increase of 56%. The OA–siloxene fillers exhibited excellent dispersion within the PE matrix through the in situ polymerization technique. Compared to pure PE, PE/OA–siloxene nanocomposites containing 1.13 wt% content of OA–siloxene showed 68.3 °C, 126%, 37%, and 46% enhancements in Tdmax, breaking strength, modulus, and elongation at break, respectively.
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Lin, Jium Ming, and Cheng Hung Lin. "A Novel Fuel Cell System Design by Using Ziegler-Nichols-Based Intelligent Fuzzy Controller." Applied Mechanics and Materials 479-480 (December 2013): 934–37. http://dx.doi.org/10.4028/www.scientific.net/amm.479-480.934.

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This paper proposes a novel fuel cell system design by integrating both methods of Ziegler-Nichols-based PID control and the intelligent fuzzy control, thus the relative stability and disturbance rejection properties can be reserved. This new method is not proposed before for fuel cell control system design. By using PID method for the normal case of fuel cell current requirement, the overshoot of the temperature is 45%, the temperature rise and the settling times are 0.65 sec and 2 sec, respectively. However, by using intelligent fuzzy Ziegler-Nichols-based PID controller design, the overshoot of the temperature is 12%, the temperature rise and the settling times are 0.7 sec and 1 sec, respectively. Thus the proposed method is better. Moreover, this paper also takes the system disturbance variation effect into consideration, e.g. the current requirement is increased by 100% for climbing a slope or speed-up conditions; note a large 60% temperature overshoot is produced by using Ziegler-Nichols based PID controller. But the overshoot is only 20% by using the intelligent fuzzy Ziegler-Nichols-based PID controller. Thus the proposed system is more robust.
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姚, 秀超, 立斌 王, 春晖 李 та ін. "齐格勒-纳塔催化剂载体的研究进展". 工程施工技术 3, № 3 (2025): 45. https://doi.org/10.33142/ect.v3i3.15694.

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齐格勒-纳塔(Ziegler-Natta)催化剂自发现以来,在聚烯烃工业生产中占据核心地位。载体作为Ziegler-Natta催化剂的关键组成部分,对催化剂的性能有着至关重要的影响。文中详细阐述了Ziegler-Natta催化剂载体的研究进展,包括传统载体如氯化镁的结构、性能及改性方法,新型载体如介孔分子筛、聚合物载体等的特点与应用,以及载体对催化剂活性中心分布、聚合活性、聚合物性能等方面的作用机制,并对未来Ziegler-Natta催化剂载体的发展方向进行了展望,旨在为高效聚烯烃催化剂的研发提供参考。
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46

Firdaus, Ramadan. "Room Temperature Controller uses the PID." Telekontran : Jurnal Ilmiah Telekomunikasi, Kendali dan Elektronika Terapan 4, no. 2 (2016): 1–12. http://dx.doi.org/10.34010/telekontran.v4i2.1885.

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Abstract - Today's automatic control system provides many benefits for humans. Apart from being able to increase work time, automatic control can also reduce human errors and increase work effectiveness. One application of automatic control is controlling temperature with the aim of obtaining the desired temperature in a relatively short time and can maintain the temperature in a stable condition. The temperature control system can be applied using the Arduino and LabVIEW boards. In this temperature control system one LM35 temperature sensor is used. The temperature sensor is placed in a position that is adjusted to the inside of the plant to find the temperature transfer that occurs in the plant. Data from the sensor then goes to the Arduino board, which in this control system uses data as an acquisition. To maintain the temperature inside the factory, use a ventilation fan to lower the temperature if the temperature inside the plant exceeds the set point. To control the fan used this controls the PID which is implemented through LabVIEW. In addition to implementing the PID control, LabView is used as an interface to find out the actual temperature of the plant RPM speed of the fan used and filling in the PID parameters. In the PID approval three parameters can be obtained with Ziegler-Nichols penalties. The results of the study show that the plant response is continuous oscillation and can be overcome by using Ziegler-Nichols continuous oscillation punishment. By using LabVIEW PID and punishment parameters using the Ziegler-Nichols method, for a set point temperature of 28oC the plant response is (28 ± 0.5) oC. In other words controlling temperature using the PID control and the Ziegler-Nichols method have errors below 2% indicating that the temperature control system is feasible to use. Keyword : Temperature, PID Control, LabVIEW, Arduino board, Ziegler-Nichols.
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Escher, Fernanda F. N., Luciana P. Silva, Griselda B. Galland, and Adriana Benetti. "Análise de copolímeros de etileno alfa-olefinas por meio de técnicas de fracionamento." Polímeros 10, no. 4 (2000): 202–8. http://dx.doi.org/10.1590/s0104-14282000000400007.

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Este trabalho apresenta a avaliação da heterogeneidade de resinas comerciais de copolímeros de etileno-1-buteno, produzidas por diferentes processos com catalisadores Ziegler-Natta e de resinas de copolímeros de etileno-1-hexeno sintetizadas em laboratório com catalisadores metalocênicos suportados e em solução. Para fazer a avaliação da heterogeneidade foram empregadas técnicas de fracionamento por extração com diferentes solventes e temperaturas e fracionamento térmico por DSC. As frações obtidas foram caracterizadas por 13C-NMR, FTIR, SEC e DSC. Como esperado, foi confirmada uma maior heterogeneidade das resinas sintetizadas com catalisador Ziegler-Natta quando comparadas às resinas metalocênicas. A resina obtida com catalisador Ziegler-Natta, produzida pelo processo Union Carbide (UCC), apresenta uma incorporação mais homogênea de comonômero do que o processo Spherilene. A resina obtida com catalisador metalocênico homogêneo permite maior incorporação de comonômero resultando em uma maior heterogeneidade no tamanho das cadeias comparada com a obtida com catalisador metalocênico suportado.
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48

Becker, Dirk Wolfram, Roger Knopp, Falk Kunkel, Uwe Schwarz, Johanna Seemann, and Stefan Thieme. "Präzisionsonkologie revolutioniert Nuklearmedizin mit theranostischem Ansatz." Der Nuklearmediziner 42, no. 04 (2019): 321–27. http://dx.doi.org/10.1055/a-0959-0745.

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ZusammenfassungRadiopharmazeutika erleben dank spektakulärer Forschungserfolge eine Renaissance. Große Hoffnungen richten sich auf Methoden, mit denen Mediziner versteckte Krebsgeschwüre aufspüren und dann zielgenau bekämpfen können.Mit der Registrierung von 90Y als Yttriga und der bahnbrechenden weltweit ersten Zulassung des 68Ge/68Ga-Radionuklidgenerators GalliaPharm® hat Eckert & Ziegler den Weg für einen theranostischen Ansatz in der Nuklearmedizin und Onkologie geebnet.Eckert & Ziegler positioniert sich hier als Komplettanbieter für die klinische Routine und die pharmazeutische Industrie.Das Unternehmen bietet folgende Produkte aus einer Hand: Pharmazeutische Entwicklung von Liganden, die mit Nukliden für PET und Therapie auf Modular Lab-Synthesemodulen markiert werden können; Herstellung von gebrauchsfertigen Arzneimitteln für klinische Studien und Routine; Kalibrierung von Messgeräten; Herstellung von Strahlungsquellen zur Qualitätskontrolle; Kameratechnik und Strahlenschutz sowie Heißzellen für Routinesynthesen für Patienten. Eckert & Ziegler, ein starker Partner für Forscher und Kliniker, verbessert ständig seine Produkte und Dienstleistungen, um die Patienten besser zu versorgen.
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49

Shiono, Takeshi. "Thirty Years with Ziegler Catalysts." Seikei-Kakou 23, no. 9 (2011): 517. http://dx.doi.org/10.4325/seikeikakou.23.517.

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50

Elsner, P. "Nachruf Volker Ziegler (1941 – 2006)." Dermatologie in Beruf und Umwelt 54, no. 10 (2006): 169–70. http://dx.doi.org/10.5414/dbp54169.

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