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1

Brink, Chris. "Power structures." Algebra Universalis 30, no. 2 (1993): 177–216. http://dx.doi.org/10.1007/bf01196091.

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2

Novák, Vítězslav. "On a power of relational structures." Czechoslovak Mathematical Journal 35, no. 1 (1985): 167–72. http://dx.doi.org/10.21136/cmj.1985.102006.

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3

Woudstra, Els, and Stephanie De Smale. "Introduction: Power Structures." Junctions: Graduate Journal of the Humanities 1, no. 1 (2016): 1. http://dx.doi.org/10.33391/jgjh.14.

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4

Georgescu, George. "Fuzzy power structures." Archive for Mathematical Logic 47, no. 3 (2008): 233–61. http://dx.doi.org/10.1007/s00153-008-0082-6.

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5

Van Dijk, Teun A. "Structures of Discourse and Structures of Power." Annals of the International Communication Association 12, no. 1 (1989): 18–59. http://dx.doi.org/10.1080/23808985.1989.11678711.

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6

Rasmussen, Gunnar. "Power flow in structures." Journal of the Acoustical Society of America 102, no. 5 (1997): 3075. http://dx.doi.org/10.1121/1.420222.

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7

BRINK, CHRIS. "POWER STRUCTURES AND LOGIC." Quaestiones Mathematicae 9, no. 1-4 (1986): 69–94. http://dx.doi.org/10.1080/16073606.1986.9632109.

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8

Madar�sz, R. Sz. "Remarks on power structures." Algebra Universalis 34, no. 2 (1995): 179–84. http://dx.doi.org/10.1007/bf01204780.

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9

Demenet, Pierre-Francois, and B. K. Bae. "SHOAIBA II POWER PLANT HYDRAULIC STUDIES." Coastal Engineering Proceedings 1, no. 34 (2014): 28. http://dx.doi.org/10.9753/icce.v34.structures.28.

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10

Mekler, Alan H. "Universal structures in power ℵ1". Journal of Symbolic Logic 55, № 2 (1990): 466–77. http://dx.doi.org/10.2307/2274640.

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AbstractIt is consistent with ¬ CH that every universal theory of relational structures with the joint embedding property and amalgamation for -(3)-diagrams has a universal model of cardinality ℵ1. For classes with amalgamation for -(4)-diagrams it is consistent that and there is a universal model of cardinality ℵ2.
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11

Gorsky, E. "Adams Operations and Power Structures." Moscow Mathematical Journal 9, no. 2 (2009): 305–23. http://dx.doi.org/10.17323/1609-4514-2009-9-2-305-323.

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12

Visoka, Gëzim. "Review essay: criminalised power structures." Peacebuilding 5, no. 3 (2017): 339–41. http://dx.doi.org/10.1080/21647259.2017.1324375.

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13

Mikhailov, A. P., and D. F. Lankin. "The structures of power hierarchies." Mathematical Models and Computer Simulations 2, no. 2 (2010): 200–210. http://dx.doi.org/10.1134/s2070048210020079.

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14

Flaherty, Patrick. "Stalinist power structures and militarism." Socialism and Democracy 7, no. 3 (1991): 141–56. http://dx.doi.org/10.1080/08854309108428111.

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15

Ivashchenko, I. N. "Safety of Power-Generating Structures." Hydrotechnical Construction 33, no. 8-9 (1999): 501–6. http://dx.doi.org/10.1007/bf02801091.

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16

Jacobs, Keith. "Structures of power and inequality." International Journal of Housing Policy 23, no. 2 (2023): 424–28. http://dx.doi.org/10.1080/19491247.2023.2209934.

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17

Kashima, Hiroaki, and Haruo Yoneyama. "DYNAMIC RESPONSE OF 5, 10 AND 15 MW FIXED-BOTTOM OFFSHORE WIND TURBINES IN WIND AND WAVES." Coastal Engineering Proceedings, no. 37 (October 2, 2023): 54. http://dx.doi.org/10.9753/icce.v37.structures.54.

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In recent years, the offshore wind turbine industry has become more active in response to the movement toward carbon neutrality by 2050, and technological development of large-scale offshore wind turbines (OWTs) with improved power generation efficiency and high economic efficiency has progressed. However, little is known about their response characteristics and the relationship between the scale of power generation and the response characteristics of OWTs. The purpose of this study is to clarify the differences in the dynamic response of fixed-bottom OWTs with different power generation scale
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18

Lopez, Ivan, Gregorio Iglesias, Mario Lopez, Francisco Castro, and Miguel Ángel Rodríguez. "TURBINE−CHAMBER COUPLING IN AN OWC WAVE ENERGY CONVERTER." Coastal Engineering Proceedings 1, no. 33 (2012): 2. http://dx.doi.org/10.9753/icce.v33.structures.2.

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Oscillating Water Column (OWC) systems are one of the most popular technologies for wave energy conversion. Their main elements are the chamber with the water column and the air turbine. When studying the performance of an OWC system both elements should be considered together, for they are effectively coupled: the damping exerted by the air turbine affects the efficiency of the conversion from wave power to pneumatic power in the OWC chamber, which in turn affects the air flow driving the turbine. The optimum level of damping is that which maximizes the efficiency of the conversion from wave
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19

Raval, Pratik, Dariusz Kacprzak, and Aiguo P. Hu. "3D inductive power transfer power system." Wireless Power Transfer 1, no. 1 (2014): 51–64. http://dx.doi.org/10.1017/wpt.2014.7.

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To date, the technique of inductive power transfer has found applications in industry including two-dimensional battery charging. However, this restricts any load to planar movements. This paper proposes custom designed magnetic structures of a loosely magnetically coupled three-dimensional inductive power transfer system. This is done via computational software utilizing the finite-element-method. More specifically, single-phase and multi-phase primary magnetic structures are proposed to distribute a power transfer window along three orthogonal axes. Next, a secondary magnetic structure is cu
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20

Dyer, Ira. "Is power equipartitioned in complicated structures?" Journal of the Acoustical Society of America 100, no. 4 (1996): 2721. http://dx.doi.org/10.1121/1.416161.

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21

Rassineux, Jean‐Louis M. "Power flow analysis of simple structures." Journal of the Acoustical Society of America 84, no. 4 (1988): 1557. http://dx.doi.org/10.1121/1.397229.

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22

Sun, Jiawei. "Different Structures of Audio Power Amplifiers." Highlights in Science, Engineering and Technology 111 (August 19, 2024): 1–6. http://dx.doi.org/10.54097/17szgx18.

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In recent years, the world's technological advancements have been continuously improving, with semiconductor technology developing rapidly. As a result, power amplifier circuits have also seen rapid development and widespread application. There are various types of power amplifier circuits, among which the one specifically designed for amplifying audio is the audio power amplifier. Serving as an electronic amplifier, the audio power amplifier can amplify low-power electronic audio signals to levels capable of driving devices, making its presence noticeable in many audio systems. Understanding
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23

Boggio, Andrea. "Linking Corporate Power to Corporate Structures." Social & Legal Studies 22, no. 1 (2012): 107–31. http://dx.doi.org/10.1177/0964663912458447.

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24

Dowding, Keith, Patrick Dunleavy, Desmond King, and Helen Margetts. "Rational Choice and Community Power Structures." Political Studies 43, no. 2 (1995): 265–77. http://dx.doi.org/10.1111/j.1467-9248.1995.tb01711.x.

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The community power debate concluded with each side believing they had won. Political theorists have generalized power, making empirical investigation very difficult; urban scholars have turned their attention to more manageable empirical problems. Rational choice advances the debate, exposing the errors of all sides and facilitating a new approach which transcends structural versus individualist methods. By separating various aspects of power in urban contexts, complementary techniques such as network analysis in a bargaining framework, semi-structured interviewing and the use of text databas
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25

ORLANDI, P. "Energy spectra power laws and structures." Journal of Fluid Mechanics 623 (March 6, 2009): 353–74. http://dx.doi.org/10.1017/s0022112008005016.

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Direct numerical simulations (DNS) of two inviscid flows, the Taylor–Green flow and two orthogonal interacting Lamb dipoles, together with the DNS of forced isotropic turbulence, were performed to generate data for a comparative study. The isotropic turbulent field was considered after the transient and, in particular, when the velocity derivative skewness oscillates around −0.5. At this time, Rλ ≈ 257 and a one decade wide k−5/3 range was present in the energy spectrum. For the inviscid flows the fields were considered when a wide k−3 range was achieved. This power law spectral decay correspo
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26

Stephen, Sudeep, Bharati Rajan, Joe Ryan, Cyriac Grigorious, and Albert William. "Power domination in certain chemical structures." Journal of Discrete Algorithms 33 (July 2015): 10–18. http://dx.doi.org/10.1016/j.jda.2014.12.003.

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27

Dogariu, A., J. Uozumi, and T. Asakura. "Angular Power Spectra of Fractal Structures." Journal of Modern Optics 41, no. 4 (1994): 729–38. http://dx.doi.org/10.1080/09500349414550741.

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28

Wells, Christi Jay. "Embodied Listening and Structures of Power." Americas: A Hemispheric Music Journal 31, no. 1 (2022): vii—xii. http://dx.doi.org/10.1353/ame.2022.a911965.

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29

Vasil’ev, Yu S., V. V. Elistratov, and L. I. Kubyshkin. "Modeling of power-generating structures at pumped-storage power plants." Power Technology and Engineering 41, no. 4 (2007): 191–96. http://dx.doi.org/10.1007/s10749-007-0037-9.

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30

Ouwehand, P., and H. Rose. "Filtral powers of structures." Journal of Symbolic Logic 63, no. 4 (1998): 1239–54. http://dx.doi.org/10.2307/2586649.

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AbstractAmong the results of this paper are the following:1. Every Boolean (ultra)power is the union of an updirected elementary family of direct ultrapowers.2. Under certain conditions, a finitely iterated Boolean ultrapower is isomorphic to a single Boolean ultrapower.3. A ω-bounded filtral power is an elementary substructure of a filtral power.4. Let be an elementary class closed under updirected unions (e.g., if is an amalgamation class); then is closed under finite products if and only if is closed under reduced products if and only if is a Horn class.
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31

lukes, steven, and ladawn haglund. "power and luck." European Journal of Sociology 46, no. 1 (2005): 45–66. http://dx.doi.org/10.1017/s0003975605000020.

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in applying rational choice theory to the debates about power, it has been proposed that distinguishing power from luck yields new insights. specifically, it has been suggested that, where social and institutional structures favour some and disfavour others, the former have the good luck to get what they want without trying and the latter the bad luck to be faced with collective action problems that prevent them from furthering their interests. against such proposals, it is argued that luck, thus understood, is non-explanatory and, moreover, depoliticizing. it is further argued that they exemp
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32

Shimosako, Kenichiro, Taro Arikawa, Masahide Takeda, et al. "MODEL EXPERIMENT AND FIELD TEST OF PW-OWC TYPE WAVE POWER EXTRACTING BREAKWATER." Coastal Engineering Proceedings, no. 35 (June 23, 2017): 2. http://dx.doi.org/10.9753/icce.v35.structures.2.

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Many research studies on wave power conversion have been conducted in Japan over the past 30 years, but the outgrowth of these studies have yet to be put to practical use. In this study, medium-scale and large-scale hydraulic model experiments as well as prototype field test on a new oscillating water column with a projecting wall (PW-OWC) wave power extracting breakwater were carried out in order to investigate the efficiency of energy conversion. The primary energy conversion efficiency of the PW-OWC converter is about 10% larger than that of the standard OWC type used in the medium-scale ex
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33

Sun, Tara Qian. "Adopting Artificial Intelligence in Public Healthcare: The Effect of Social Power and Learning Algorithms." International Journal of Environmental Research and Public Health 18, no. 23 (2021): 12682. http://dx.doi.org/10.3390/ijerph182312682.

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Although the use of artificial intelligence (AI) in healthcare is still in its early stages, it is important to understand the factors influencing its adoption. Using a qualitative multi-case study of three hospitals in China, we explored the research of factors affecting AI adoption from a social power perspective with consideration of the learning algorithm abilities of AI systems. Data were collected through semi-structured interviews, participative observations, and document analysis, and analyzed using NVivo 11. We classified six social powers into knowledge-based and non-knowledge-based
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34

Marie, COUTOSTHEVENOT, and HONG Kyung-Wook. "TOE BERM DESIGN FOR RUBBLE-MOUND BREAKWATERS: EXAMPLE OF THE SAFI POWER PLANT PROJECT." Coastal Engineering Proceedings, no. 35 (June 23, 2017): 34. http://dx.doi.org/10.9753/icce.v35.structures.34.

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DAEWOO E&C (Engineering & Construction) is in charge constructing a new 1320 MW coal-fired power plant located approximately 15 km south-west of the city of Safi in Morocco. ARTELIA Eau & Environnement was appointed by the Contractor to perform the hydraulic design review of the rubble-mound breakwaters protecting the intake and outfall. The toe berm is a key design feature of rubble-mound breakwaters built in breaking conditions, since it helps to support the armour layer and protect the structure from potential scour-induced damage. The initial toe berm design was based on Van De
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35

Monteiro, Vitor, and Joao L. Afonso. "The Future of Electrical Power Grids: A Direction Rooted in Power Electronics." Energies 16, no. 13 (2023): 4929. http://dx.doi.org/10.3390/en16134929.

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Electrical power grids are changing with a focus on ensuring energy sustainability and enhanced power quality for all sectors. Over the last few decades, there has been a change from a centralized to a decentralized paradigm, which is the consequence of a large-scale incorporation of new electrical technologies and resultant equipment. Considering the foreseeable continuation of changes in electrical power grids, a direction rooted in power electronics with a focus on hybrid AC/DC grids, including the support of solid-state transformers and unified systems, is presented in this paper. Convergi
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36

Pearson, Ian. "The power of information: transforming power structures in the new millennium." Foresight 1, no. 5 (1999): 413–26. http://dx.doi.org/10.1108/14636689910802313.

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37

Pillay, Anand, and Charles Steinhorn. "On Dedekind complete o-minimal structures." Journal of Symbolic Logic 52, no. 1 (1987): 156–64. http://dx.doi.org/10.2307/2273870.

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AbstractFor a countable complete o-minimal theory T, we introduce the notion of a sequentially complete model of T. We show that a model of T is sequentially complete if and only if ≺ for some Dedekind complete model . We also prove that if T has a Dedekind complete model of power greater than , then T has Dedekind complete models of arbitrarily large powers. Lastly, we show that a dyadic theory—namely, a theory relative to which every formula is equivalent to a Boolean combination of formulas in two variables—that has some Dedekind complete model has Dedekind complete models in arbitrarily la
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38

Черновицкая, Ю. В. "Взаимодействие науки и власти: наука на службе у власти?" Гуманитарные исследования в Восточной Сибири и на Дальнем Востоке 53, № 3 (2020): 130–40. http://dx.doi.org/10.24866/1997-2857/2020-3/130-140.

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Взаимоотношения науки как важнейшего интеллектуального ресурса и власти являются необходимым звеном политического развития и модернизации общества. На современном этапе выделяются такие формы власти, как биовласть, власть стандартов и инфраструктур, нетократия и др. В статье рассматривается вопрос о том, как наука соотносится с новыми формами власти и как ее достижения могут использоваться властными структурами для контроля над жизнью человека и общества. Автор доказывает необходимость моральной оценки деятельности как властных структур, так и отдельного ученого для преодоления кризиса доверия
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39

Черновицкая, Ю. В. "Взаимодействие науки и власти: наука на службе у власти?" Гуманитарные исследования в Восточной Сибири и на Дальнем Востоке 53, № 3 (2020): 130–40. http://dx.doi.org/10.24866/1997-2857/2020-3/130-140.

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Взаимоотношения науки как важнейшего интеллектуального ресурса и власти являются необходимым звеном политического развития и модернизации общества. На современном этапе выделяются такие формы власти, как биовласть, власть стандартов и инфраструктур, нетократия и др. В статье рассматривается вопрос о том, как наука соотносится с новыми формами власти и как ее достижения могут использоваться властными структурами для контроля над жизнью человека и общества. Автор доказывает необходимость моральной оценки деятельности как властных структур, так и отдельного ученого для преодоления кризиса доверия
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40

Miller, John Boris. "On safety and rivals in power-structures." Bulletin of the Australian Mathematical Society 37, no. 3 (1988): 379–82. http://dx.doi.org/10.1017/s000497270002699x.

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It is shown that every minimal power-structure other than the singleton power-structure has at least two contenders; that is, any contender has at least one rival. The safe core of a power-structure is empty if and only if the power-structure is minimal.
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41

Gagarinov, I. "Structures of high-power electric propulsion systems." Transactions of the Krylov State Research Centre 1, no. 395 (2021): 119–31. http://dx.doi.org/10.24937/2542-2324-2021-1-395-119-131.

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Object and purpose of research. This paper discusses structures of high-power electric propulsion systems for ships. The purpose was to give a summary of design solutions made in development of these systems. Materials and methods. This paper relies on academic and technical data, as well on the long-term author’s experience in marine electric propulsion R&Ds. The solution suggested by the author is based on the comparative analysis of design solutions adopted in the development of structures for high-power marine electric power and propulsion systems. Main results. Summary on design solut
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42

Morris, Stella, and Morris A. G. Ezra. "Data Structures in Power System Reliability Estimation." Journal of Applied Sciences 4, no. 2 (2004): 322–29. http://dx.doi.org/10.3923/jas.2004.322.329.

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43

Bernhard Gruemme. "Religious Education between Power, Identity and Structures." Journal of Christian Education in Korea ll, no. 57 (2019): 37–57. http://dx.doi.org/10.17968/jcek.2019..57.002.

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44

Kaur, Ramneek. "A Review on Power MOSFET Device Structures." International Journal for Research in Applied Science and Engineering Technology V, no. X (2017): 208–18. http://dx.doi.org/10.22214/ijraset.2017.10034.

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45

Connell (book editor), William J., Andrea Zorzi (book editor), and Alan G. Arthur (review author). "Florentine Tuscany: Structures and Practices of Power." Renaissance and Reformation 37, no. 3 (2001): 59–61. http://dx.doi.org/10.33137/rr.v37i3.8715.

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46

Ganz, Margery A., William J. Connell, and Andrea Zorzi. "Florentine Tuscany: Structures and Practices of Power." Sixteenth Century Journal 32, no. 4 (2001): 1142. http://dx.doi.org/10.2307/3649013.

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47

Kohl, Benjamin G., William J. Connell, and Andrea Zorzi. "Florentine Tuscany: Structures and Practices of Power." American Historical Review 106, no. 4 (2001): 1492. http://dx.doi.org/10.2307/2693144.

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48

Ramadoss, Dr V. "Determination of M-Power Soft Subgroup Structures." International Journal for Research in Applied Science and Engineering Technology 7, no. 10 (2019): 609–11. http://dx.doi.org/10.22214/ijraset.2019.10092.

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49

Herbert, Christopher J., William S. Capinski, and Michelle S. Malcuit. "Optical power limiting with nonlinear periodic structures." Optics Letters 17, no. 15 (1992): 1037. http://dx.doi.org/10.1364/ol.17.001037.

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50

Wolfreys, J. "Review: Structures of Power in Modern France." French Studies 56, no. 2 (2002): 290–91. http://dx.doi.org/10.1093/fs/56.2.290.

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