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1

de Groot, Piet. "Doe die TV uit!" Zorg + Welzijn 28, no. 4 (July 28, 2022): 49. http://dx.doi.org/10.1007/s41185-022-1305-0.

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2

Brintzinger, Miriam, Michael Reicherts, Wolfgang Tschacher, Katrin Endtner, Hansjörg Znoj, and Mario Pfammatter. "Emotionsverarbeitung und ihre Veränderung in der Therapie depressiver Symptome." Zeitschrift für Klinische Psychologie und Psychotherapie 49, no. 3 (July 2020): 147–56. http://dx.doi.org/10.1026/1616-3443/a000591.

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Zusammenfassung. Theoretischer Hintergrund: Störungen der Emotionsverarbeitung gelten als transdiagnostisches Merkmal psychischer Probleme. Mit dem Modell „Emotionale Offenheit“ liegt ein Konzept vor, das therapierelevante Komponenten der Emotionsverarbeitung operationalisiert und mit Hilfe eines validierten Instruments (Dimensionen der Offenheit für Emotionen, DOE) erfasst. Fragestellung: Untersucht wird, ob bei depressiven Symptomen problematische Muster im DOE aufscheinen, sich diese in einer Psychotherapie verändern und mit einer Verringerung der Symptome verbunden sind. Methode: DOE und Symptombelastung wurden in einer klinischen Feldstudie erhoben. Mittels Prä-Post-Vergleichen und multiplen Regressionsanalysen wurden Zusammenhänge untersucht. Ergebnisse: Die erfassten Dimensionen der Emotionsverarbeitung waren mit den Symptomindikatoren assoziiert. Die ambulante psychotherapeutische Behandlung ging mit einer Zunahme der Repräsentation, Kommunikation und Regulation von Emotionen sowie mit einer Verringerung der Wahrnehmung körperlicher Emotionsindikatoren einher. Dieses Verlaufsmuster war mit einer Reduktion der depressiven Symptome verknüpft. Schlussfolgerungen: Die Untersuchung von Problemen der Emotionsverarbeitung über verschiedene Modelle hinaus kann zur Entwicklung personalisierter, transdiagnostischer psychotherapeutischer Strategien beitragen.
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3

Kowang, Tan Owee, and Choi Sang Long. "Design of Experiment – An Integration of Fisher, Taguchi and Shainin DOE Methodology." Applied Mechanics and Materials 789-790 (September 2015): 1201–6. http://dx.doi.org/10.4028/www.scientific.net/amm.789-790.1201.

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Design of experiment (DOE) is the focal collective of quality technique and is widely used in Research and Development (R&D) organization to optimize product design parameters. There are three main DOE approaches that commonly adopted by R&D companies, which are the classical Fisher’s DOE, Taguchi DOE and Shainin DOE. This paper explores how these three main DOE approaches could be integrated to optimize product design parameters in a Research and Development company. The paper starts with enlightenment of the common DOE steps, follows by discussion of issues faced by the Research and Development company during the implementation of the three DOE approaches in product design. The paper subsequently illustrates how the three DOE approaches could be integrated as a new methodology for optimization of product design parameters. The integrated DOE methodology presented in this paper offers an alternative and effective way to conduct DOE in a dynamic product design and development environment.
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4

Simonelli, Jeanne. "The Doe." Anthropology and Humanism Quarterly 13, no. 3 (October 1988): 77. http://dx.doi.org/10.1525/ahu.1988.13.3.77.

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5

Mateles, Richard I. "DOE Privatization." Science 272, no. 5260 (April 19, 1996): 339. http://dx.doi.org/10.1126/science.272.5260.339.a.

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6

Moore, J. B. "The Doe." Psychological Perspectives 52, no. 4 (November 18, 2009): 501–2. http://dx.doi.org/10.1080/00332920903306775.

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7

Putnam, Frank W. "Jane Doe." Journal of Interpersonal Violence 29, no. 18 (May 30, 2014): 3277–89. http://dx.doi.org/10.1177/0886260514534989.

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8

Simonelli, Jeanne. "The Doe." Anthropology Humanism Quarterly 13, no. 3 (October 1988): 77. http://dx.doi.org/10.1525/ahu.1988.13.3.77.1.

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9

Mateles, R. I. "DOE Privatization." Science 272, no. 5260 (April 19, 1996): 338f—340. http://dx.doi.org/10.1126/science.272.5260.338f.

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10

Mateles, R. I. "DOE Privatization." Science 272, no. 5260 (April 19, 1996): 339a. http://dx.doi.org/10.1126/science.272.5260.339a.

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11

Cromer, Risa. "Jane Doe." Cultural Anthropology 34, no. 1 (February 22, 2019): 18–25. http://dx.doi.org/10.14506/ca34.1.04.

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12

Grumet, Jordan. "Jane Doe." Journal of General Internal Medicine 11, no. 12 (December 1996): 761. http://dx.doi.org/10.1007/bf02598995.

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13

Ankit D. Oza, Ankit D. Oza, and Prof Tushar M. Patel Prof. Tushar M. Patel. "Parametric Optimization of Gravity Die Casting Process Using FEA-DOE Hybrid Modeling." Indian Journal of Applied Research 3, no. 7 (October 1, 2011): 193–98. http://dx.doi.org/10.15373/2249555x/july2013/60.

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14

Fernández, Borja, Beatriz González, Garikoitz Artola, Norberto López de Lacalle, and Carlos Angulo. "A Quick Cycle Time Sensitivity Analysis of Boron Steel Hot Stamping." Metals 9, no. 2 (February 15, 2019): 235. http://dx.doi.org/10.3390/met9020235.

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Several vehicle platforms involving the hot stamping of manufactured parts are launched every year. Mass production represents a key step in the manufacturing process of an actual hot stamping part. In this step, the cycle time (consisting of cooling time (t1) and handling time (t2) components) must be optimized. During t1, the stamping tool (punch and die) is closed, for cooling of the part. The t2 components (i.e., inlet transfer time, press forming time (closing and opening), and outlet transfer time) define the production output that ensures process performance. However, cost is the main driver in automotive applications. Here, a cycle-time calculation based on the design of experiments (DOE) is proposed for formulating cost-effective formulas. An iterative one-dimensional heat transfer model for each DOE step is set up to simulate 10 hot stamping cycles; the part temperature after quenching in cycle number 10 (where steady conditions are achieved) was selected as the process output variable to be controlled in the DOE. Several DOE variables were considered. The DOE results were employed for the proposal of a simplified formula, which helps in assessing the cycle time with its excellent trade-off between calculation cost and reliability. The formula was validated by laboratory tests.
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15

Sharma, Mithun, and Shilpi Sharma. "Critical Evaluation into the practical utility of the Design of Experiments." Engineering Management in Production and Services 13, no. 3 (September 1, 2021): 50–65. http://dx.doi.org/10.2478/emj-2021-0021.

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Abstract The research aims to emphasise the relevance of the Design of Experiments (DOE) technique as a reliable method for ensuring efficient use of statistical methods in routine industrial processes. A case study approach with a deductive strategy was used to assess the effectiveness of different DOE methods to achieve the desired objectives. Screening, mid-resolution and high-resolution DOE methods helped identify, characterise, and optimise an experimental variable against the desired output response. A general framework for effective DOE is provided as part of DOE planning, including defining DOE objectives, selection criteria, noise reduction, and application across industries. Overall, various DOE models proved successful in identifying a complicated relationship between experimental variables and output response. However, when ideal DOE models may not be feasible, reducing test run by choosing lower resolution DOE or fewer replicates can still provide important insights into the experimental variables’ impact on output responses.
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16

Kim, D. H., B. M. Kim, Y. Lee, and B. H. Min. "Friction characteristics for surface finish and the stoning direction of stamping dies." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 216, no. 4 (April 1, 2002): 531–42. http://dx.doi.org/10.1243/0954405021520229.

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This paper investigates the combined effects of parameters such as die surface finish, die stoning direction, contact pressure and draw speed on the resulting friction coefficient. The study shows the correlation between the artificial neural network (ANN) and the design of experiments (DOE). The ANN and the DOE have been implemented for minimizing the friction coefficient and for investigating the effect of the parameters in the straight pulling friction test effectively. The experiments were run in random order with at least three replications. It was found that directional stoning orthogonal to the pulling direction lowers the friction more than directional stoning parallel to the pulling direction using die material FCD55 and sheet material SPCEN.
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17

Muttaqin, Benazir Imam Arif. "Telaah Kajian dan Literature Review Design of Experiment (DoE)." Journal of Advances in Information and Industrial Technology 1, no. 1 (November 1, 2019): 33–40. http://dx.doi.org/10.52435/jaiit.v1i1.10.

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Ketika kita merancang suatu eksperimen, dibutuhkan suatu perencanaan yang baik agar hasil eksperimen dapat valid, efisien, dan secara statistikal dapat dipertanggungjawabkan dengan baik. Salah satu konsep kajian yang sangat banyak digunakan dan dikembangkan di dalam eksperimen adalah Design of Experiment (DoE). Di dalam DoE terdapat serangkaian tahapan/prosedur yang harus dilaksanakan sebelum peneliti melakukan suatu eksperimen. Konsep DoE pertama kali diperkenalkan oleh Sir Ronald A. Fisher pada tahun 1930. Sampai saat ini telah banyak teknik-teknik DoE yang berkembang dan digunakan untuk memecahkan berbagai macam persoalan di berbagai bidang. Artikel ini menghasilkan telaah kajian DoE mulai dari konsep, latar belakang kemunculan, dan isu-isu terkait penggunaan DoE serta literature review tentang perkembangan konsep, teknik, dan contoh penggunaan DoE selama tiga tahun terakhir.
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18

Martínez-Paredes, Eugenio, Nuria Nicodemus, Juan José Pascual, and Javier García. "Challenges in rabbit doe feeding, including the young doe." World Rabbit Science 30, no. 1 (March 31, 2022): 13–34. http://dx.doi.org/10.4995/wrs.2022.15562.

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In this review is summarized the last knowledge on rabbit doe nutrition, to complement the current nutritional requirements and strategies for the young and adult rabbit does, considering the production, health, and welfare issues. The rabbit doe must reach an adequate maturity level (body condition) at first artificial insemination (AI) to face its productive life with minimal guarantees (around 7.0 mm of perirenal fat thickness, 2.8 ng/mL of plasma leptin concentration and around 18% and 15-20% of body protein and fat, respectively). This goal can be achieved by restricting feed intake from 12 weeks of age until first AI or feeding ad libitum with a fibrous diet (<10.5 MJ digestible energy/kg) from 60 d of age to first parturition. Once the doe is reproducing, the increase of the n-3 fatty acids (or reduction of the n-6/n-3 ratio), soluble fibre (under epizootic enteropathy) and the Arg/Lys and Gln/Lys ratios may help to improve the reproductive traits of rabbit does, although their optimal level of inclusion remain to be identified. It is recommended to limit an excessive negative energy balance before parturition, and the supplementation of glucose precursors to reduce the ketosis incidence could be useful. The formulation of different diets for the doe and the litter to fit better their requirements and assuring their health would be an option to consider when it would be applicable in the farm. The influence of the mother on the litter microbiota and immune status and its potential modulation through the diet open a new research area that will deserve more studies in the next future.
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19

Ciancio, Claudio, Francesco Gagliardi, Giuseppina Ambrogio, and Luigi Filice. "Dynamic DOE for porthole die extrusion optimisation." MATEC Web of Conferences 80 (2016): 11005. http://dx.doi.org/10.1051/matecconf/20168011005.

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20

Yarn, Kao Feng, Wen Chung Chang, and Wei Ching Chuang. "Analyses of New Diffraction Optics Element Design by Polymer Gratings." Materials Science Forum 663-665 (November 2010): 389–92. http://dx.doi.org/10.4028/www.scientific.net/msf.663-665.389.

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A new diffraction optics element (DOE) which combines semiconductor laser and polymer-based DOE processing technology into a single optoelectronic polymer device is proposed. To directly combine the VCSEL (Vertical-Cavity Surface-Emitting Laser) with DOE, DOE surface profile can be integrated on the top of VCSEL utilizing polymer gratings by soft-lithography technique. Such a new kind of polymer-based DOE-VCSEL can control spatial distribution of emitting laser energy and output angle. Through the innovative development, it can be predicted that the optical loss and traveling distance in DOE system are decreased due to the shrinking the device volume by this new design.
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21

Han, J. B. "Flip-Chip BGA Design to Avert Die Cracking." Journal of Electronic Packaging 123, no. 1 (October 29, 1999): 58–63. http://dx.doi.org/10.1115/1.1329130.

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Fracture mechanics is applied to flip-chip BGA design to avert die cracking from its backside. Fracture mechanics is integrated with the finite element analysis (FEA) and design of virtual experiments (virtual DOE) to analyze the effects of location and length of a die crack, and the effects of some key material properties and package dimensions on die cracking of flip-chip BGA. The stress intensity factor (SIF) and the strain energy release rate (ERR) are taken as the design indices. The FEA is used to calculate the fracture parameters, and the virtual DOE is employed to determine contributions of each design parameter to die cracking and their acceptable design windows. The investigation consists of two parts. The first is relations of length and location of a die crack with the fracture parameters. The relations are established through sweeping along crack length for a crack located at the center of the die backside, and along the die backside surface. The critical crack length is determined for a specific design. The second is the virtual DOE based on fracture mechanics. Several key material properties and package dimensions are used as the design inputs. The main effects and interactions of these design parameters to die cracking are calculated. Based on it, some generic design guidelines are made. It is concluded that substrate and die thicknesses are the two most significant factors to die cracking of flip-chip BGA. Increasing substrate thickness and reducing die thickness are the most effective measures to design a package with high resistance to die cracking.
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22

Monintja, F. J., M. J. Hendrik, E. Pudjihastuti, and L. R. Ngangi. "PENGAMATAN POTENSI REPRODUKSI KAMBING BETINA YANG DI PELIHARA SECARA TRADISIONAL DI DAERAH PESISIR KECAMATAN TOMBARIRI KABUPATEN MINAHASA." ZOOTEC 36, no. 2 (July 30, 2016): 466. http://dx.doi.org/10.35792/zot.36.2.2016.12922.

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ABSTRACT OBSERVATION OF DOE REPRODUCTIVE POTENTIAL RAISED TRADITIONALLY AROUND COASTAL AREAS OF TOMBARIRI DISTRICT MINAHASA REGENCY. Doe has reproductive potential that can be measure based on goatling healthy kids, kidding interval, kidding size and kidding type. Tombariri district is one of potencial areas in Minahasa Regency to develop goat farming. Goat farming development needs many information including reproductive potential of doe. In fact, the scientific information about this subject has not been available yet. The purpose of this study was to evaluate the reproductive potential based on kidding interval, kidding size and kidding type of doe that were raised traditionally in District of Tombariri, Minahasa Regency. Samples of this research was took using purposive random sampling method. Data were collected by interview using quetionnaires to 40 farmers with total ownerships of 100 doe. Parameters of this study were kidding interval, kidding size and kidding type. The results shown that doe in Tombariri district had 243 days average of kidding interval. Kidding size range was 1.84-2.018 goatling per doe per year. Percentage of twin kids were above 80 percens per year. Based on those results, it can be concluded that the doe which were farmed traditionally around coastal area of Tombariri district, Minahasa Regency had the good reproductive potential. Keywords : Doe, kidding interval, kidding size, twin kids,Tombariri district.
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23

Lugard, Paul. "Doe effe normaal." Markt en Mededinging 23, no. 3 (August 2020): 85–87. http://dx.doi.org/10.5553/menm/138762362020023003001.

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24

Aceves, William J. "Doe v. Unocal." American Journal of International Law 92, no. 2 (April 1998): 309–14. http://dx.doi.org/10.2307/2998043.

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25

Born, Gary B., and W. Hardy Callcott. "In re Doe." American Journal of International Law 83, no. 2 (April 1989): 371–75. http://dx.doi.org/10.2307/2202753.

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A federal grand jury investigating possible criminal violations of the Racketeer Influenced and Corrupt Organizations Act (18 U.S.C. §§ 1961 — 1968 (1982)) (RICO) by former Philippine President Ferdinand Marcos and his wife issued subpoenas requiring the Márcoses to provide handwriting and voice exemplars and fingerprints, and to sign forms authorizing the release of confidential banking records. The Márcoses refused to comply with the subpoenas and were held in civil contempt. On appeal, the U.S. Court of Appeals for the Second Circuit (per Cardamone, J.) affirmed the contempt order and held that (1) the current Government of the Philippines had effectively waived whatever head-of-state immunity the Márcoses might have otherwise enjoyed; (2) United States law governed the Márcoses’ privilege against self-incrimination, rather than the arguably broader provisions of Philippine law; and (3) the trial court had the authority to enforce the grand jury’s order requiring the Márcoses to waive foreign financial secrecy laws.
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26

Duba, Alfred G. "Management at DOE." Science 246, no. 4930 (November 3, 1989): 564–65. http://dx.doi.org/10.1126/science.246.4930.564.b.

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27

Nelson, David B. "DOE Supercomputer Resources." Science 246, no. 4927 (October 13, 1989): 192. http://dx.doi.org/10.1126/science.246.4927.192.b.

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28

Glass, Alexander J. "DOE Fusion Program." Science 232, no. 4757 (June 20, 1986): 1486. http://dx.doi.org/10.1126/science.232.4757.1486.b.

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29

Sillevis Smitt, Trudeke. "Doe de zelftest." Advocatenblad 101, no. 6 (July 2021): 44–48. http://dx.doi.org/10.5553/ab/0165-13312021101006015.

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30

lanniello, Louis. "DOE Peer Review." Science 265, no. 5170 (July 15, 1994): 302. http://dx.doi.org/10.1126/science.265.5170.302.b.

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31

Duba, Alfred G. "Management at DOE." Science 246, no. 4930 (November 3, 1989): 564–65. http://dx.doi.org/10.1126/science.246.4930.564-b.

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32

Bossolan, Regina Pagotto, Paulo de Alencar Pompiani, Newton Key Hokama, Gimol Benzaquen Perosa, Maria Lúcia Toralles-Pereira, and José Mauro Zanini. "Projeto "Doe sangue"." Interface - Comunicação, Saúde, Educação 9, no. 16 (February 2005): 207–10. http://dx.doi.org/10.1590/s1414-32832005000100022.

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33

Hurst, I. "Baby Doe Rules." PEDIATRICS 116, no. 6 (December 1, 2005): 1600–1601. http://dx.doi.org/10.1542/peds.2005-2002.

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34

Turkel, Henry. "After Baby Doe." Southern Medical Journal 78, no. 3 (March 1985): 364. http://dx.doi.org/10.1097/00007611-198503000-00039.

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35

NELSON, D. B. "DOE Supercomputer Resources." Science 246, no. 4927 (October 13, 1989): 192. http://dx.doi.org/10.1126/science.246.4927.192-a.

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36

DUBA, A. G. "Management at DOE." Science 246, no. 4930 (November 3, 1989): 564–65. http://dx.doi.org/10.1126/science.246.4930.564-a.

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37

&NA;, &NA;. "GRANNY DOE CONTROVERSY." Journal of Wound, Ostomy and Continence Nursing 12, no. 3 (May 1985): 23A. http://dx.doi.org/10.1097/00152192-198505000-00003.

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38

Astwood, Chris. "From “Jane Doe”." Caribbean Quarterly 63, no. 1 (January 2, 2017): 132–34. http://dx.doi.org/10.1080/00086495.2017.1302161.

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39

Nichols, Fred J., and Mayra Verheyen. "Doe maar Lissabon." World Literature Today 66, no. 3 (1992): 530. http://dx.doi.org/10.2307/40148486.

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40

Maggs, William Ward. "DOE funds Gizmos." Eos, Transactions American Geophysical Union 68, no. 39 (1987): 770. http://dx.doi.org/10.1029/eo068i039p00770-01.

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41

Anonymous. "Students at DOE." Eos, Transactions American Geophysical Union 70, no. 24 (1989): 650. http://dx.doi.org/10.1029/eo070i024p00650-04.

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42

Kramer, David. "Obama addresses DOE." Physics Today 62, no. 3 (March 2009): 29. http://dx.doi.org/10.1063/1.4797086.

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43

lanniello, L. "DOE Per Review." Science 265, no. 5170 (July 15, 1994): 302. http://dx.doi.org/10.1126/science.265.5170.302-a.

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44

Bienenstock, A. "DOE Lab Competition?" Science 267, no. 5194 (January 6, 1995): 14–15. http://dx.doi.org/10.1126/science.267.5194.14.

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45

Haller RN, Karen B. "Meet Jane Doe." Journal of Obstetric, Gynecologic & Neonatal Nursing 22, no. 5 (September 1993): 398. http://dx.doi.org/10.1111/j.1552-6909.1993.tb01819.x.

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46

GLASS, A. J. "DOE Fusion Program." Science 232, no. 4757 (June 20, 1986): 1486. http://dx.doi.org/10.1126/science.232.4757.1486-a.

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47

Coats, Karen. "Chloe Doe (review)." Bulletin of the Center for Children's Books 61, no. 2 (2007): 104–5. http://dx.doi.org/10.1353/bcc.2007.0671.

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48

Hollander, Loes den. "Ik doe het!" Denkbeeld 20, no. 3 (June 2008): 1. http://dx.doi.org/10.1007/bf03076600.

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49

Haaring, Leny. "Doe maar gewoon…" Denkbeeld 19, no. 3 (June 2007): 72–74. http://dx.doi.org/10.1007/bf03059383.

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50

Hageman, Alexia. "Doe even niets." Nursing 23, no. 2 (February 2017): 3. http://dx.doi.org/10.1007/s41193-017-0018-9.

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