Journal articles on the topic 'MoGe'

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1

Şahan, E., S. Şahan, M. Karamanlıoğlu, M. Gul, and O. Tufekcioğlu. "The MOGE(S) classification." Herz 41, no. 6 (January 25, 2016): 503–6. http://dx.doi.org/10.1007/s00059-015-4394-0.

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2

Nevirkovets, I. P., M. A. Belogolovskii, and J. B. Ketterson. "Josephson junctions based on amorphous MoGe: prospects for use in superconducting electronics." Superconductor Science and Technology 35, no. 3 (February 4, 2022): 035008. http://dx.doi.org/10.1088/1361-6668/ac4b00.

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Abstract We have fabricated and characterized all-MoGe Josephson junctions with a very thin Al/AlO x /(Al) barrier, where the amorphous MoGe films exhibit superconducting transition temperatures up to 7 K. Due to the uniformity of the surface morphology of the MoGe films, the junctions demonstrate high uniformity of their tunneling properties. The experimental data on the temperature dependence of the subgap current agree well with theoretical calculations. The results obtained imply that Josephson tunnel junctions based on amorphous superconductors are promising candidates for use in superconducting electronics, especially in applications requiring multiple stacked junctions or the creation of a nonequilibrium quasiparticle distribution.
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3

Arbustini, E., J. Narula, N. Priya, and S. R. Panwar. "The MOGE(S) Classification of Cardiomyopathy." RUHS Journal of Health Science 2, no. 1 (March 31, 2017): 9. http://dx.doi.org/10.37821/ruhsjhs.2.1.2017.9-11.

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4

Mogendorff, Karen. "Secundaire analyse van kwalitatieve data: belang, kansen en beperkingen." KWALON 27, no. 1 (April 1, 2022): 65–69. http://dx.doi.org/10.5117/kwa2022.1.008.moge.

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5

Marković, N., C. N. Lau, and M. Tinkham. "The limits of superconductivity in MoGe nanowires." Physica C: Superconductivity 387, no. 1-2 (May 2003): 44–48. http://dx.doi.org/10.1016/s0921-4534(03)00639-7.

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6

Karapetrov, G., A. Belkin, V. Novosad, M. Iavarone, J. E. Pearson, and W. K. Kwok. "Adjustable superconducting anisotropy in MoGe-Permalloy hybrids." Journal of Physics: Conference Series 150, no. 5 (March 1, 2009): 052095. http://dx.doi.org/10.1088/1742-6596/150/5/052095.

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7

Mayosi, Bongani M. "MOGE(S): a standardized classification of cardiomyopathies?" Nature Reviews Cardiology 11, no. 3 (January 14, 2014): 134–35. http://dx.doi.org/10.1038/nrcardio.2013.219.

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8

Kokubo, N., B. Shinozaki, and P. H. Kes. "Mode locking and lattice orientations of driven vortex matter in amorphous MoGe films." Physica C: Superconductivity and its Applications 468, no. 7-10 (April 2008): 581–84. http://dx.doi.org/10.1016/j.physc.2007.11.022.

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9

White, W. R., A. Kapitulnik, and M. R. Beasley. "Collective vortex motion ina-MoGe superconducting thin films." Physical Review Letters 70, no. 5 (February 1, 1993): 670–73. http://dx.doi.org/10.1103/physrevlett.70.670.

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10

Belkin, A., V. Novosad, M. Iavarone, J. Fedor, J. E. Pearson, A. Petrean-Troncalli, and G. Karapetrov. "Tunable transport in magnetically coupled MoGe/Permalloy hybrids." Applied Physics Letters 93, no. 7 (August 18, 2008): 072510. http://dx.doi.org/10.1063/1.2966156.

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11

Arbustini, Eloisa, Navneet Narula, Luigi Tavazzi, Alessandra Serio, Maurizia Grasso, Valentina Favalli, Riccardo Bellazzi, et al. "The MOGE(S) Classification of Cardiomyopathy for Clinicians." Journal of the American College of Cardiology 64, no. 3 (July 2014): 304–18. http://dx.doi.org/10.1016/j.jacc.2014.05.027.

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12

Kokubo, N., K. Kadowaki, and P. H. Kes. "Mode locking of vortex matter in the peak effect regime of amorphous MoGe films." Physica C: Superconductivity and its Applications 445-448 (October 2006): 206–9. http://dx.doi.org/10.1016/j.physc.2006.03.114.

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13

Wijne, R. P. "Dat de Hoge Raad in 2019 arrest moge wijzen." Tijdschrift voor Vergoeding Personenschade 22, no. 1 (April 2019): 19–23. http://dx.doi.org/10.5553/tvp/138820662019022001004.

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14

Yazdani, Ali, and Aharon Kapitulnik. "Superconducting-Insulating Transition in Two-Dimensionala-MoGe Thin Films." Physical Review Letters 74, no. 15 (April 10, 1995): 3037–40. http://dx.doi.org/10.1103/physrevlett.74.3037.

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15

Arbustini, Eloisa, Navneet Narula, G. William Dec, K. Srinath Reddy, Barry Greenberg, Sudhir Kushwaha, Thomas Marwick, et al. "MOGE(S) nosology in low-to-middle-income countries." Nature Reviews Cardiology 11, no. 5 (March 25, 2014): 307. http://dx.doi.org/10.1038/nrcardio.2013.219-c1.

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16

Steel, D. G., W. R. White, and J. M. Graybeal. "Direct observation of vortex decoupling in synthetic MoGe/Ge multilayers." Physical Review Letters 71, no. 1 (July 5, 1993): 161–64. http://dx.doi.org/10.1103/physrevlett.71.161.

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17

Serrier-Garcia, Lise, Matias Timmermans, Joris Van de Vondel, and Victor V. Moshchalkov. "Pinning of superconducting vortices in MoGe/Au Thin nano–squares." Physica C: Superconductivity and its Applications 533 (February 2017): 109–13. http://dx.doi.org/10.1016/j.physc.2016.06.013.

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18

Kokubo, N., T. Nishizaki, B. Shinozaki, and P. H. Kes. "Lattice orientations of driven vortex matter in amorphous MoGe films." Physica C: Superconductivity 470, no. 1 (January 2010): 43–47. http://dx.doi.org/10.1016/j.physc.2009.10.002.

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19

Kapitulnik, A., A. Yazdani, J. S. Urbach, W. R. White, and M. R. Beasley. "Studies of two-dimensional MoGe superconductors in a magnetic field." Physica B: Condensed Matter 197, no. 1-4 (March 1994): 530–39. http://dx.doi.org/10.1016/0921-4526(94)90253-4.

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20

Steel, D. G., W. R. White, and J. M. Graybeal. "Direct observation of vortex decoupling in synthetic MoGe/Ge multilayers." Physica B: Condensed Matter 194-196 (February 1994): 1897–98. http://dx.doi.org/10.1016/0921-4526(94)91448-6.

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21

Kokubo, N., S. Okayasu, A. Kanda, and B. Shinzaki. "History dependent vortex configurations in superconducting disks of amorphous MoGe." Journal of Physics: Conference Series 150, no. 2 (February 1, 2009): 022044. http://dx.doi.org/10.1088/1742-6596/150/2/022044.

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22

Agarwal, Anushree, Rayan Yousefzai, M. Fuad Jan, Chi Cho, Kambiz Shetabi, Michelle Bush, Bijoy K. Khandheria, et al. "Clinical Application of WHF-MOGE(S) Classification for Hypertrophic Cardiomyopathy." Global Heart 10, no. 3 (September 1, 2015): 209. http://dx.doi.org/10.1016/j.gheart.2015.01.001.

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23

Kokubo, N., and B. Shinozaki. "Mode locking features of driven vortex matter in an amorphous MoGe film detected by rf impedance technique." Physica C: Superconductivity 469, no. 15-20 (October 2009): 1099–101. http://dx.doi.org/10.1016/j.physc.2009.05.210.

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24

Kokubo, N., B. Shinzaki, and P. H. Kes. "Field dependent orientation of driven vortex lattice in amorphous MoGe films." Journal of Physics: Conference Series 150, no. 5 (March 1, 2009): 052116. http://dx.doi.org/10.1088/1742-6596/150/5/052116.

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25

Westphal, Julian G., Angelos G. Rigopoulos, Constantinos Bakogiannis, Sarah E. Ludwig, Sophie Mavrogeni, Boris Bigalke, Torsten Doenst, et al. "The MOGE(S) classification for cardiomyopathies: current status and future outlook." Heart Failure Reviews 22, no. 6 (July 19, 2017): 743–52. http://dx.doi.org/10.1007/s10741-017-9641-4.

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26

Arbustini, Eloisa, Navneet Narula, G. William Dec, K. Srinath Reddy, Barry Greenberg, Sudhir Kushwaha, Thomas Marwick, et al. "The MOGE(S) Classification for a Phenotype–Genotype Nomenclature of Cardiomyopathy." Journal of the American College of Cardiology 62, no. 22 (December 2013): 2046–72. http://dx.doi.org/10.1016/j.jacc.2013.08.1644.

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27

Dec, G. William, and Eloisa Arbustini. "Utilizing the MOGE(S) Classification for Predicting Prognosis in Dilated Cardiomyopathy∗." Journal of the American College of Cardiology 66, no. 12 (September 2015): 1324–26. http://dx.doi.org/10.1016/j.jacc.2015.06.1335.

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28

Pasotti, Michele. "The MOGE(S) Classification for a Phenotype-Genotype Nomenclature of Cardiomyopathy." Journal of the American College of Cardiology 63, no. 23 (June 2014): 2584. http://dx.doi.org/10.1016/j.jacc.2014.01.078.

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29

Mulenga, Mwambazi Chrispine, Mubanga Lombe, and Francis Simui. "Exploring the Global Pupil’s Academic Performance in Linear Programming: A Glimpse on Literature Review." American Journal of Life Science and Innovation 2, no. 2 (August 29, 2023): 23–36. http://dx.doi.org/10.54536/ajlsi.v2i2.1791.

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The main objective of this essay was to conduct an exhaustive literature review of the pupil’s performance in linear programming. The study sample had 15 participants comprising 8 females and 7 males purposively sampled. The study concerning students’ lived experiences of their academic success in linear programming was conducted using a hermeneutics phenomenology design. The study was qualitative as the details were descriptive, led by the specified methodology, and used qualitative research methodologies and procedures. This is a result of its stringent compliance standards for a variety of processes, including sampling techniques and data analysis methodologies (Mulenga, 2015). The intent was to describe the pupil’s academic performance, explore pupils’ linear programming-related disablers, and explore techniques for enhancing pupils’ academic performance. The study was only carried out for six months. In light of this, it has been noted that the performance of pupils in linear programming is subpar as a result of a variety of complications, including lack of teaching and learning resources, incompetent teachers, pedagogy they use, pupils’ attitude, mathematical language, time and the usage of subpar textbooks, among others. As a result, the existing difficulties have even led to pupils’ low morale, which is prevalent worldwide, especially in developing nations. In order to address the issue of the topic being taught by incompetent teachers, it is advised that the government train and recruit qualified and competent mathematics teachers to teach the subject at senior secondary. Furthermore, additional time should be allotted to the challenging topics through collaboration between the MoGE and the Curriculum Development Centre (CDC). In order to support pedagogies among mathematics teachers, it is also advised that the MoGE strengthen Continuous Professional Development (CPD) initiatives in schools. Besides, the MoGE should receive more funding in order to purchase instructional materials for different schools across the nation. Teachers of mathematics are commended to use a variety of approaches, tactics, and strategies in order to enhance how they present the lesson they are teaching.
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30

Elshahhat, Ahmed, Abdisalam Hassan Muse, Omer Mohamed Egeh, and Berihan R. Elemary. "Estimation for Parameters of Life of the Marshall-Olkin Generalized-Exponential Distribution Using Progressive Type-II Censored Data." Complexity 2022 (October 3, 2022): 1–36. http://dx.doi.org/10.1155/2022/8155929.

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A new three-parameter extension of the generalized-exponential distribution, which has various hazard rates that can be increasing, decreasing, bathtub, or inverted tub, known as the Marshall-Olkin generalized-exponential (MOGE) distribution has been considered. So, this article addresses the problem of estimating the unknown parameters and survival characteristics of the three-parameter MOGE lifetime distribution when the sample is obtained from progressive type-II censoring via maximum likelihood and Bayesian approaches. Making use of the s-normality of classical estimators, two types of approximate confidence intervals are constructed via the observed Fisher information matrix. Using gamma conjugate priors, the Bayes estimators against the squared-error and linear-exponential loss functions are derived. As expected, the Bayes estimates are not explicitly expressed, thus the Markov chain Monte Carlo techniques are implemented to approximate the Bayes point estimates and to construct the associated highest posterior density credible intervals. The performance of proposed estimators is evaluated via some numerical comparisons and some specific recommendations are also made. We further discuss the issue of determining the optimum progressive censoring plan among different competing censoring plans using three optimality criteria. Finally, two real-life datasets are analyzed to demonstrate how the proposed methods can be used in real-life scenarios.
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31

Dutta, Surajit, Indranil Roy, Somak Basistha, Soumyajit Mandal, John Jesudasan, Vivas Bagwe, and Pratap Raychaudhuri. "Collective flux pinning in hexatic vortex fluid in a-MoGe thin film." Journal of Physics: Condensed Matter 32, no. 7 (November 13, 2019): 075601. http://dx.doi.org/10.1088/1361-648x/ab52b8.

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32

Kokubo, N., S. Okayasu, and B. Shinozaki. "Shell structures of vortices in superconducting disks of an amorphous MoGe film." Physica C: Superconductivity 468, no. 15-20 (September 2008): 1316–18. http://dx.doi.org/10.1016/j.physc.2008.05.043.

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33

Graybeal, J. M. "Competition between superconductivity and localization in two-dimensional ultrathin a-MoGe films." Physica B+C 135, no. 1-3 (December 1985): 113–19. http://dx.doi.org/10.1016/0378-4363(85)90448-6.

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34

Graybeal, J. M., J. Luo, and W. R. White. "Interlayer vortex coupling and the Hall sign reversal in MoGe/Ge multilayers." Physical Review B 49, no. 18 (May 1, 1994): 12923–26. http://dx.doi.org/10.1103/physrevb.49.12923.

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35

Zhao, Zhi Gang, Cun Li Dai, and Lun Wu Zeng. "The Quantuam Melting Transitions with the Magnetic Field in Weakly Disordered Josephson Junction Arrays." Applied Mechanics and Materials 380-384 (August 2013): 4845–48. http://dx.doi.org/10.4028/www.scientific.net/amm.380-384.4845.

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Using the resistively shunted junction model, we study the magnetic field induced dynamic melting transitions of a current-driven vortex system in two-dimensional weakly disordered Josephson junction arrays at zero temperature. From the unified model simulations, we find that the intrinsic quantum vortex liquid (QVL) phenomenon, which consistent with the recent experimental reports in disordered and superconducting MoGe films. The enhancement of critical current in the QVL phase arises from intrinsic quantum fluctuations in the moving vortex flow.
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36

Klein, L., W. R. White, M. R. Beasley, and A. Kapitulnik. "Irreversible properties of micrometer-thick, superconducting MoGe/Ge multilayers as a function of anisotropy." Physical Review B 51, no. 10 (March 1, 1995): 6796–99. http://dx.doi.org/10.1103/physrevb.51.6796.

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37

Yazdani, Ali, W. R. White, M. R. Hahn, M. Gabay, M. R. Beasley, and A. Kapitulnik. "Observation of Kosterlitz-Thouless-type melting of the disordered vortex lattice in thin films ofa-MoGe." Physical Review Letters 70, no. 4 (January 25, 1993): 505–8. http://dx.doi.org/10.1103/physrevlett.70.505.

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38

Sosilo, Gideon Pratama, Gervasius Herry Purwoko, and Stephanus Evert Indrawan. "PERANCANGAN ARSITEKTUR INTERIOR TOKO TIP TOP APPAREL AND BIKE DI SURABAYA." KREASI 3, no. 1 (February 18, 2018): 240–66. http://dx.doi.org/10.37715/kreasi.v3i1.538.

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G-Interior Consultant adalah perusahaan yang bergerak dalam bidang jasa konsultan desain interior. Untuk pengerjaan sebuah proyek interior, pemilik G-Interior Consultant bekerjasama dengan beberapa pihak seperti pabrik furniture yang melayani made by order (sesuai pesanan), supplier bahan bangunan serta tenaga ahli lain yang sistem kerjanya bersifat outsource atau tidak terikat. . Judul perancangan interior “Perancangan Arsitektur Interior Toko TIP TOP Apparel & Bike di Surabaya” diambil dari proyek yang sedang dikerjakan oleh perusahaan G-Interior Consultant selama tahun 2017. TIP TOP Apparel & Bike merupakan perpaduan antara showroom motor Harley Davidson dan Moge, toko aksesoris, toko apparel dan cafe. Area yang akan didesain meliputi empat lantai. Lantai pertama akan dijadikan sebagai area showroom motor Harley Davidson dan Moge, gudang, lift barang dan staff area. Lantai dua akan dijadikan untuk menempuatkan ruang office, toko aksesoris motor dan kasir. Lantai tiga adalah toko apparel, termasuk area kasir dan area santai. Selanjutnya, lantai empat merupakan area cafe dan area istirahat karyawan. Berdasarkan permintaan pemilik proyek, tema desain yang hendak diaplikasikan pada TIP TOP Apparel & Bike mengarah pada gaya industrial, karena brand motor yang dijual adalah Harley Davidson sehingga harus menunjukkan kesan macho. Hasil konsep dan aplikasi menunjukkan TIP TOP Apparel & Bike didesain dengan menggunakan gaya industrial modern dengan memainkan bata pada dinding, tanpa menggunakan plafon agar pipa-pipa tetap terexpose, menggunakan barang-barang bekas seperti drum oli bekas ataupun mesin motor bekas atau ban bekas menjadi meja ataupun aksesoris ruangan. Konsep penerapan bentuk yang diaplikasikan pada interior TIP TOP Apparel & Bike merupakan bentukan geometris. Furniture meja dan kursi dibuat dengan menggunakan material kayu dan besi yang di-finishing dengan cat hitam. Aksesoris pendukung interior dibuat dengan menggunakan material material yang terbuat dari kayu atau besi maupun aksosoris lainya dapat membantu mendukung interior. Unfinished material yang digunakan meliputi: concrete dan batu bata expose, sedangkan finished furniture yang digunakan seperti: solid-wood, pipa besi, dan re-used material seperti: ban, mesin harley, kayu palet, drum oli dan karung goni.
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39

Lita, A. E., V. B. Verma, R. D. Horansky, J. M. Shainline, R. P. Mirin, and S. Nam. "Materials Development for High Efficiency Superconducting Nanowire Single-Photon Detectors." MRS Proceedings 1807 (2015): 1–6. http://dx.doi.org/10.1557/opl.2015.544.

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ABSTRACTSuperconducting nanowire single-photon detectors (SNSPDs) based on ultra-thin films have become the preferred technology for applications that require high efficiency single-photon detectors with high speed, high timing resolution, and low dark count rates at near-infrared wavelengths. Since demonstration of the first SNSPD using NbN thin films, an increasingly larger number of materials are being explored. We investigate amorphous thin film alloys of MoSi, MoGe, and WRe with the goal of optimizing SNSPDs for higher operating temperature, high efficiency and high speed. To explore material adequacy for SNSPDs, we have measured superconducting transition temperature (Tc) as a function of film thickness and sheet resistance, as well as critical current densities. In this paper we present our results comparing these materials to WSi, another amorphous material widely used for SNSPD devices.
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40

Arbustini, Eloisa, Navneet Narula, G. William Dec, K. Srinath Reddy, Barry Greenberg, Sudhir Kushwaha, Thomas Marwick, et al. "The MOGE(S) Classification for a Phenotype–Genotype Nomenclature of Cardiomyopathy: Endorsed by the World Heart Federation." Global Heart 8, no. 4 (December 1, 2013): 355. http://dx.doi.org/10.1016/j.gheart.2013.11.001.

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41

Poliakova, A., A. Krutikov, E. Semernin, A. Kostareva, and A. Gudkova. "The clinical use of the MOGE(S) classification in the differential diagnosis between idiopathic hypertrophic cardiomyopathy and its phenocopies." Russian Journal of Cardiology, no. 11 (November 26, 2019): 35–41. http://dx.doi.org/10.15829/1560-4071-2019-11-35-41.

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42

Pierce, Edgar F., and Donald W. Pate. "Mood Alterations in Older Adults following Acute Exercise." Perceptual and Motor Skills 79, no. 1 (August 1994): 191–94. http://dx.doi.org/10.2466/pms.1994.79.1.191.

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Limited research indicates positive affective change following acute bouts of exercise, but whether this improved affect among younger subjects may be generalized to older individuals is not known. The present study, then, examined the effects of a single bout of physical activity among older participants. 16 trained women ( Moge = 64.5 ± 7.6 yr.) completed an abbreviated Profile of Mood States prior to and immediately following a 75-min. session of aerobic line dancing. A series of one-way analyses of variance with repeated measures were used to examine differences between pre- and posttest subscores on mood states. Significant decreases following exercise in scores on Tension, Depression, Fatigue, and Anger and a significant increase in scores on Vigor relative to preexercise (control) scores were found. Global mood was significantly improved after the exercise session. No significant difference was found between pre- and postexercise measures of Confusion. Previous findings of significant improvements in affect immediately after an acute bout of exercise may be generalized to older adults. Repetition with a nonexercised control group is desirable.
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43

Luo, Jianhua, and Gift Muyunda. "Teachers' Voice in Zambia." International Journal of Asian Education 2, no. 3 (August 15, 2021): 388–97. http://dx.doi.org/10.46966/ijae.v2i3.164.

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Curriculum Development in Zambia is highly centralized, with the Curriculum Development Center (CDC) being charged with developing the curriculum through consultative and participatory approaches through the course and subject panels where teachers are engaged. Nevertheless, there has been no empirical evidence to show how teachers are actively involved in the development process. This study aimed to investigate the phenomenon of teachers' involvement in the curriculum development process in Zambia. This study was qualitative and used a case study design approach. Data was collected using a semi-structured interview guide from secondary school teachers and headteachers. Raw data were collected through semi-structured interview forms from secondary school teachers and headteachers. The researcher analyzed the data using MAXQDA qualitative software to identify initial codes and generate emerging themes quickly. The results showed that secondary school teachers were dissatisfied with the present way of curriculum development, which insignificantly neglects them, and also, the majority of them have never participated in the development of the curriculum. Further, the results revealed that most of the secondary school teachers in Lusaka were willing to participate at any stage of the curriculum development in Zambia. This study concludes by arguing that secondary school teachers are significantly neglected to participate in the curriculum development in Zambia and recommends that the Ministry of General Education (MoGE) broaden the scope of secondary school teachers' participation in the curriculum developed through the Curriculum Development Center (CDC).
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44

Вайханская, Т. Г., and Л. Н. Сивицкая. "Arrhythmogenic Cardiomyopathy. Part I: Change of the Concept, New Phenotypes and Diagnostic Criteria." Кардиология в Беларуси, no. 6 (January 12, 2021): 855–73. http://dx.doi.org/10.34883/pi.2020.12.6.008.

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Термин «аритмогенная дисплазия правого желудочка» (АДПЖ), предложенный в 1982 г. группой ученых для определения сердечного заболевания с поражением правого желудочка (ПЖ) с основным клиническим проявлением в виде жизнеопасных желудочковых аритмий, достаточно длительно применялся в практической кардиологии. Однако исследования последнего десятилетия с изучением генотип-фенотипических корреляций и метаанализом многоцентровых данных с результатами магнитно-резонансной томографии и/или аутопсийных молекулярно-гистологических тестов показали, что фиброзно-жировое замещение миокарда является отличительной фенотипической особенностью этого заболевания, при котором поражение миокарда наблюдается в обоих желудочках (вовлечение левого желудочка может быть как минимальным, так и наравне с ПЖ или значительно превышать тяжесть поражения ПЖ). Новые знания и прогресс в понимании патогенеза заболевания привели к последовательной эволюции первоначальной терминологии, классификации и концепции – от АДПЖ к аритмогенной правожелудочковой кардиомиопатии и позднее – к новой парадигме «аритмогенной кардиомиопатии» (АКМП). Новый общий термин АКМП, который предложили в 2019 г. эксперты Общества сердечного ритма (HRS), концептуально отражает весь спектр аритмических и генетических заболеваний, с обозначением новых аритмогенных фенотипов при дисфункции одного или обоих желудочков – леводоминантная АКМП и бивентрикулярная АКМП. В июне 2020 г. ведущие европейские эксперты приняли консенсусный документ с включением новых критериев АКМП, предложенных междисциплинарной группой фундаментальных международных исследователей и клинических кардиологов из Медицинского университета г. Падуи. В представленной статье детально изложены новые критерии АКМП, обобщены клинико-генетические аспекты новой концепции АКМП и собственный опыт применения новых диагностических критериев в практике. Клинические наблюдения, демонстрирующие три основных фенотипа АКМП с мутациями в генах FLNC (лево-доминантный вариант), PKP2 (право-доминантный тип) и JUP (бивентрикулярный вариант), представлены в международной классификации MOGE(S). The term “arrhythmogenic right ventricular dysplasia” (ARVD) was proposed in 1982 by a group of scientists to determine the heart disease affecting the right ventricle (RV), which is characterized by the main clinical manifestation in the form of malignant ventricular arrhythmias. It has been used for a long time in practical cardiology. However, multicenter studies of the last decade with meta-analysis of genotype-phenotypic correlations, results of magnetic resonance imaging and/ or autopsy molecular histological tests have shown that myocardial fibro-fatty replacement is a distinctive phenotypic feature of this disease and myocardial damage is observed in both ventricles (involvement of the left ventricle can be either minimal or on a par with RV, or can significantly exceed the severity of the affected RV). New knowledge and progress in understanding the pathogenesis of the disease led to a sequential evolution of the initial terminology, classification and conception – from ARVD to arrhythmogenic right ventricular cardiomyopathy and later – to the new paradigm of “arrhythmogenic cardiomyopathy” (ACM). The new general term ACM that was proposed in 2019 by experts of the Heart Rhythm Society (HRS) conceptually reflects the whole spectrum of arrhythmic and genetic diseases with the definition of new arrhythmogenic phenotypes in case of dysfunction of one or both ventricles – dominant-left ACM and biventricular ACM. In June 2020, the leading European experts adopted a consensus document with the new ACM criteria proposed by interdisciplinary team of international fundamental researchers and clinical cardiologists from the Medical School of the University of Padua.The presented article highlights the new ACM criteria in detail and summarizes the clinical and genetic aspects of the new ACM concept and own experience of the new diagnostic criteria. The clinical case reports that demonstrate the three main ACM phenotypes with mutations in the FLNC gene (dominant-left variant), PKP2 gene (dominant-right type), and JUP (biventricular variant) are presented in the international classification MOGE (S).
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45

Konta, Laura, Rodney C. G. Franklin, and Juan P. Kaski. "Nomenclature and systems of classification for cardiomyopathy in children." Cardiology in the Young 25, S2 (August 2015): 31–42. http://dx.doi.org/10.1017/s1047951115001201.

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AbstractThere has been a progressive evolution in systems of classification for cardiomyopathy, driven by advances in imaging modalities, disease recognition, and genetics, following initial clinical descriptions in the 1960s. A pathophysiological classification emerged and was endorsed by World Health Organisation Task Forces in 1980 and 1995: dilated, hypertrophic, restrictive, and arrhythmogenic right ventricular cardiomyopathies; subdivided into idiopathic and disease-specific cardiomyopathies. Genetic advances have increasingly linked “idiopathic” phenotypes to specific mutations, although most linkages exhibit highly variable or little genotype–phenotype correlation, confounded by age-dependent changes and varying penetrance. The following two dominant classification systems are currently in use, with advocates in both continents. First, American Heart Association (2006): “A heterogeneous group of diseases of the myocardium associated with mechanical and/or electrical dysfunction that usually exhibit inappropriate ventricular hypertrophy or dilatation due to a variety of causes that frequently are genetic”. These are subdivided to those predominantly involving the heart – primary – due to genetic mutation, including ion channelopathies, acquired disease, or mixed; and those with systemic involvement in other organ systems – secondary. Second, European Society of Cardiology (2008): “A myocardial disorder in which heart muscle is structurally and functionally abnormal… sufficient to cause the observed myocardial abnormality”, with subdivision to familial and non-familial, excluding ion channelopathies, and split to specific disease subtypes and idiopathic. Further differences exist in the definitions for hypertrophic cardiomyopathy; however, whichever high-level classification is used, the clinical reality remains phenotype driven. Clinical evaluation and diagnostic imaging dominate initial patient contact, revealing diagnostic red flags that determine further specific tests. Genetic testing is undertaken early. A recent attempt to harmonise these competing systems named the MOGE(S) system, based on descriptive logical nosology, currently remains unproven as a fully practical solution.
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46

Klingholz, Reiner. "Immer mehr Menschen wollen immer mehr." Vereinte Nationen 69, no. 5 (2021): 202. http://dx.doi.org/10.35998/vn-2021-0023.

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Fontoura Gouveia, Ana, Gustavo Monteiro, and Sílvia Fonte Santa. "Product Markets’ Deregulation: A more Productive, more Effcient and more Resilient Economy?" Revista Hacienda Pública Española 230, no. 3 (September 2019): 125–55. http://dx.doi.org/10.7866/hpe-rpe.19.3.5.

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48

Novak, Grga. "Our sea." Journal of Maritime & Transportation Science 49-50, no. 1 (April 22, 2015): 13–28. http://dx.doi.org/10.18048/2015.49-50.13.

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49

Bai, Shaokang, Yaqiong Lu, and Zuxing Zhang. "Mode field switching in narrow linewidth mode-locked fiber laser." Chinese Optics Letters 20, no. 2 (2022): 020602. http://dx.doi.org/10.3788/col202220.020602.

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Jun Wu, Jun Wu, Changhe Zhou Changhe Zhou, Hongchao Cao Hongchao Cao, Anduo Hu Anduo Hu, Wenting Sun Wenting Sun, and Wei Jia Wei Jia. "Simplified mode analysis of guided mode resonance gratings with asymmetric coatings." Chinese Optics Letters 11, no. 6 (2013): 060501–60505. http://dx.doi.org/10.3788/col201311.060501.

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