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1

Ishii, Akira, Yuichi Murayama, Yih-Lin Nien, Ichiro Yuki, P. Henry Adapon, Robert Kim, Reza Jahan, Gary Duckwiler, and Fernando Viñuela. "IMMEDIATE AND MIDTERM OUTCOMES OF PATIENTS WITH CEREBRAL ANEURYSMS TREATED WITH MATRIX1 AND MATRIX2 COILS." Neurosurgery 63, no. 6 (December 1, 2008): 1071–79. http://dx.doi.org/10.1227/01.neu.0000334047.30589.13.

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Abstract OBJECTIVE Recanalization after coil embolization of cerebral aneurysms remains a limitation of this progressively accepted modality. The Matrix detachable bioabsorbable coil (Boston Scientific Neurovascular, Natick, MA) was developed to overcome this limitation. We report a single-center experience using first- and second-generation Matrix coils. METHODS Immediate and midterm angiographic outcomes of 235 consecutive patients with 250 aneurysms treated with Matrix coils were reviewed retrospectively. The first 16 aneurysms included in the postmarket Acceleration of Connective Tissue Formation in Endovascular Aneurysm Repair (ACTIVE) study were treated exclusively with the Matrix coil, as per protocol. The next 234 aneurysms were treated in combination with bare platinum coils, stents, and the balloon-assisted technique. First-generation Matrix coils were used in 155 aneurysms (Matrix1 group) and second-generation Matrix coils were used in 79 aneurysms (Matrix2 group). Outcomes of the 3 groups were compared. RESULTS Immediate complete obliteration was achieved in 12.5% of the ACTIVE group aneurysms, 32.9% of the Matrix1 group, and 43.0% of the Matrix2 group. Overall, 87 (34.8%) aneurysms were completely occluded acutely. Procedure-related morbidity and mortality were 2.4 and 0%, respectively. Follow-up (median, 7.9 months) angiograms were obtained for 186 (74.4%) aneurysms. Complete obliteration of aneurysms was confirmed in 26.7% of the ACTIVE group, 53.4% of the Matrix1 group, and 64.2% of the Matrix2 group. Recanalization was observed in 33.3% of the ACTIVE group, 16.9% of the Matrix1 group, and 9.4% of the Matrix2 group. The overall recanalization rate was 16.1%. CONCLUSION Use of Matrix2 coils resulted in improved mechanical performance and anatomic outcome compared with Matrix1 coils. However, practitioners must be familiar with the mechanical characteristics of the Matrix coils, which are different from those of bare platinum coils.
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SASAGURI, Yasuyuki. "Matrix Metalloproteinases." Journal of UOEH 19, no. 3 (1997): 229–32. http://dx.doi.org/10.7888/juoeh.19.229.

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3

Díaz-García, José A., and Ramón Gutiérrez-Jáimez. "Singular matric and matrix variate distributions." Journal of Statistical Planning and Inference 139, no. 7 (July 2009): 2382–87. http://dx.doi.org/10.1016/j.jspi.2008.11.001.

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Pennisi, Ariel, María Elena Ramognini, and Florencia Carbajal. "La Matriz frente a la Matrix." Question/Cuestión 3, no. 76 (December 22, 2023): e852. http://dx.doi.org/10.24215/16696581e852.

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Conversación a partir de la producción de tres libros que abordan el tema de la Inteligencia Artificial como problema, vinculado a las colonización incluida la de los cuerpos. En el análisis dialogan y se complementan diversas perspectivas teóricas en un año muy particular donde la masivización del chat GPT despertó todo tipo de reacciones ”Publicamos y lo digo así en plural en términos de nosotros y nosotres ampliado y que puede seguir ampliándose, publicamos tres libros al menos que abordan este problema, con este gran problema de epocal, en dos libros que funcionan en tándem: “Cuidar la matriz frente a la Matrix” y un tercero, ”La inteligencia artificial no piensa: el cerebro tampoco”. ¿qué quiere decir eso hoy para el proyecto humanidad, que estamos haciendo? Son un montón de aristas, las que se abren, pero hay un interés común de investigación que nos reúne y siempre nos va llevando al otro no en relación a una mirada compleja”
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Abdullayev, Elvin. "Pseudo-Matrix Matrices: A Comprehensive Exploration and Applications in Matrix Equations." International Journal of Science and Research (IJSR) 12, no. 11 (November 5, 2023): 1827–28. http://dx.doi.org/10.21275/mr231118101902.

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Chamsai, Benchawan, and Wipada Samprasit. "Release of Propranolol Hydrochloride from Matrix Capsules/Disc: Effect of Matrix Additives." International Journal of Pharma Medicine and Biological Sciences 9, no. 2 (2020): 52–55. http://dx.doi.org/10.18178/ijpmbs.9.2.52-55.

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7

Mistry, Nilay, Tanaya Vaishnav, and Kaivashin Shethna. "Threat Matrix – Critical Infrastructure." Digital Forensics (4n6) Journal 5, no. 1 (February 1, 2020): 08–22. http://dx.doi.org/10.46293/4n6/2020.02.01.

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Dhany, Hanna Willa. "Performance Analysis Similarity Matrix, Responsibility Matrix, Availability Matrix, Criterion Matrix of Affinity Propagation." Journal of Physics: Conference Series 1898, no. 1 (June 1, 2021): 012043. http://dx.doi.org/10.1088/1742-6596/1898/1/012043.

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9

HIAI, Fumio. "Matrix Analysis: Matrix Monotone Functions, Matrix Means, and Majorization." Interdisciplinary Information Sciences 16, no. 2 (2010): 139–246. http://dx.doi.org/10.4036/iis.2010.139.

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10

Seth, M., K. Bhattacharya, and A. Basuray. "Optical Implementation Of Matrix-Vector And Matrix-Matrix Multiplication." Journal of Optics 21, no. 3 (September 1992): 69–74. http://dx.doi.org/10.1007/bf03549236.

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11

Hong, John, and Pochi Yeh. "Photorefractive parallel matrix–matrix multiplier." Optics Letters 16, no. 17 (September 1, 1991): 1343. http://dx.doi.org/10.1364/ol.16.001343.

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12

Alexander, William P. "MATRIX: An Interpreted Matrix Language." American Statistician 45, no. 2 (May 1991): 154. http://dx.doi.org/10.2307/2684384.

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13

TANZER, M. L. "Extracellular Matrix: Extracellular Matrix Biochemty." Science 227, no. 4684 (January 18, 1985): 289–90. http://dx.doi.org/10.1126/science.227.4684.289-a.

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14

Kalivas, D. S., G. Albanese, and A. A. Sawchuk. "Acousto-optic matrix–matrix multiplier." Optics Letters 13, no. 4 (April 1, 1988): 291. http://dx.doi.org/10.1364/ol.13.000291.

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15

Cheon, Gi-Sang, and Jin-Soo Kim. "Stirling matrix via Pascal matrix." Linear Algebra and its Applications 329, no. 1-3 (May 2001): 49–59. http://dx.doi.org/10.1016/s0024-3795(01)00234-8.

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16

Mironov, A. D. "Matrix Models and Matrix Integrals." Theoretical and Mathematical Physics 146, no. 1 (January 2006): 63–72. http://dx.doi.org/10.1007/s11232-006-0007-7.

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17

Sano, Takashi. "Matrix perspectives and matrix convexity." Linear Algebra and its Applications 666 (June 2023): 29–36. http://dx.doi.org/10.1016/j.laa.2023.02.017.

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18

Di Cesare, Paul E., Frank S. Chen, Matthias Moergelin, Cathy S. Carlson, Michael P. Leslie, Roberto Perris, and Carrie Fang. "Matrix–matrix interaction of cartilage oligomeric matrix protein and fibronectin." Matrix Biology 21, no. 5 (August 2002): 461–70. http://dx.doi.org/10.1016/s0945-053x(02)00015-x.

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19

Nofrizal, Nofrizal, and Prama Widayat. "STRATEGY BMT AL-ITTIHAD USING MATRIX IE, MATRIX SWOT 8K, MATRIX SPACE AND TWOS MATRIX." JURNAL EKONOMI PENDIDIKAN DAN KEWIRAUSAHAAN 6, no. 1 (April 1, 2018): 45. http://dx.doi.org/10.26740/jepk.v6n1.p45-58.

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This research aims to formulate and select BMT Al- Ittihad Rumbai strategy to face the changing of business environment both from internal environment such as organization resources, finance, member and external business such as competitor, economy, politics and others. This research method used Analysis of EFAS, IFAS, IE Matrix, SWOT-8K Matrix, SPACE Matrix and TWOS Matrix. our hope from this research it can assist BMT Al-Ittihad in formulating and selecting strategies for the sustainability of BMT Al-Ittihad in the future. The sample in this research is using purposive sampling technique that is the manager and leader of BMT Al-Ittihad Rumbai Pekanbaru. The result of this research shows that the position of BMT Al-Ittihad using IE Matrix, SWOT-8K Matrix and SPACE Matrix is in growth position, stabilization and aggressive . The choice of strategy after using TWOS Matrix is market penetration, market development, vertical integration, horizontal integration, and stabilization (careful.)
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20

Nofrizal, Nofrizal. "Strategy BMT Al-Ittihad Using Matrix IE, Matrix SWOT 8K, Matrix SPACE and Matrix TWOS." JURNAL TERAPAN MANAJEMEN DAN BISNIS 4, no. 1 (March 29, 2018): 56. http://dx.doi.org/10.26737/jtmb.v4i1.497.

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<p>This research aims to formulate and select BMT Al-Ittihad Rumbai strategy to face the changing of business environment both from internal environment such as organization resources, finance, member and external business such as competitor, economy, politics and others. This research method used Analysis of EFAS, IFAS, IE Matrix, SWOT-8K Matrix, SPACE Matrix and TWOS Matrix. our hope from this research it can assist BMT Al-Ittihad in formulating and selecting strategies for the sustainability of BMT Al-Ittihad in the future. The sample in this research is using purposive sampling technique that is the manager and leader of BMT Al-IttihadRumbaiPekanbaru. The result of this research shows that the position of BMT Al-Ittihad using IE Matrix, SWOT-8K Matrix and SPACE Matrix is in growth position, stabilization and aggressive. The choice of strategy after using TWOS Matrix is market penetration, market development, vertical integration, horizontal integration, and stabilization (careful.)</p>
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21

K. K. W. A. S. Kumara and G. Nandasena. "Identities of matrix powers of a matrix and matrix power of matrix on lie groups." World Journal of Advanced Engineering Technology and Sciences 11, no. 2 (April 30, 2024): 624–27. http://dx.doi.org/10.30574/wjaets.2024.11.2.0150.

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This paper introduces fundamental definitions pertaining to Matrix Lie Groups and Lie Algebra. We illustrate the concepts of the exponential of a matrix and the logarithm of a matrix as integral components of our discourse. We introduce novel identities related to the matrix powers of a matrix. To prove these identities, we employ the results of the matrix powers of a matrix. Finally, we derive an expression for the matrix powers of a matrix within the context of a connected matrix lie group.
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22

Bezushchak, Oksana. "Spectra of locally matrix algebras." Algebra and Discrete Mathematics 31, no. 1 (2021): 17–36. http://dx.doi.org/10.12958/adm1734.

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We describe spectra of associative (not necessarily unital and not necessarily countable-dimensional) locally matrix algebras. We determine all possible spectra of locally matrix algebras and give a new proof of Dixmier–Baranov Theorem. As an application of our description of spectra, we determine embeddings of locally matrix algebras.
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23

Yaici, Malika, and Kamel Hariche. "On Solvents of Matrix Polynomials." International Journal of Modeling and Optimization 4, no. 4 (August 2014): 273–77. http://dx.doi.org/10.7763/ijmo.2014.v4.385.

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24

Allahverdiev, Bilender, and Huseyin Tuna. "DISCONTINUOUS MATRIX STURM–LIOUVILLE PROBLEMS." Eurasian Mathematical Journal 13, no. 3 (2022): 08–22. http://dx.doi.org/10.32523/2077-9879-2022-13-3-08-22.

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25

Metwally, M. S., M. T. Mohamed, and A. Shehata. "On Hermite-Hermite matrix polynomials." Mathematica Bohemica 133, no. 4 (2008): 421–34. http://dx.doi.org/10.21136/mb.2008.140630.

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26

WAKIDA, SHIN-ICHI, AKINORI KAWAHARA, MASATAKA YAMANE, SAHORI TAKEDA, KUNISHIGE HIGASHI, and KAZUO HIIRO. "MATRIX MECHANISMS OF URUSHI MATRIX ISFETS." Analytical Sciences 7, Supple (1991): 807–8. http://dx.doi.org/10.2116/analsci.7.supple_807.

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27

Matharu, Jagjit Singh, Chitra Malhotra, and Mohammad Sal Moslehian. "Indefinite matrix inequalities via matrix means." Bulletin des Sciences Mathématiques 171 (October 2021): 103036. http://dx.doi.org/10.1016/j.bulsci.2021.103036.

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28

S. Kumara, K. K. W. A. "COMPUTING THE MATRIX POWERS OF MATRIX." International Journal of Advanced Research 9, no. 5 (May 31, 2021): 681–83. http://dx.doi.org/10.21474/ijar01/12892.

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In this paper, considering fractional matrix power definition, we define matrix powers of matrixusing matrix exponential and matrix logarithm. Finally present a guide for computingthe matrix powers of matrix.
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29

CVAVB, CHANDRARAJU. "REAL KM MATRIX AND CABIBBO MATRIX." Modern Physics Letters A 16, no. 10 (March 28, 2001): 647–54. http://dx.doi.org/10.1142/s0217732301003875.

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Fritzsch type of real symmetric 3×3 matrices are chosen. From these matrices the mass matrices relevant to the four-quark cases are deduced. It is also shown that the orthogonal matrices that diagonalize the 3×3 Fritzsch mass matrices also yield the orthogonal matrices that diagonalize the mass matrices corresponding to the four-quark case. The Cabibbo mixing matrix is straightaway obtained from the KM real mixing matrix. An exact expression for the Cabibbo mixing angle is found here. The real KM matrix is reduced to a few parameters, which can be determined from the experiment. The results obtained here are the exact expressions for the KM real matrix.
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Wang, Chao, Weiming Zhang, Jiufen Liu, and Nenghai Yu. "Fast Matrix Embedding by Matrix Extending." IEEE Transactions on Information Forensics and Security 7, no. 1 (February 2012): 346–50. http://dx.doi.org/10.1109/tifs.2011.2164907.

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31

Adhikari, Vijay Kumar, Sourabh Jain, and Zhi-Li Zhang. "From traffic matrix to routing matrix." ACM SIGMETRICS Performance Evaluation Review 38, no. 3 (January 3, 2011): 49–54. http://dx.doi.org/10.1145/1925019.1925029.

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32

Anninos, Dionysios, and Beatrix Mühlmann. "Notes on matrix models (matrix musings)." Journal of Statistical Mechanics: Theory and Experiment 2020, no. 8 (August 24, 2020): 083109. http://dx.doi.org/10.1088/1742-5468/aba499.

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33

Kónya, B., G. Lévai, and Z. Papp. "Green’s matrix from Jacobi-matrix Hamiltonian." Journal of Mathematical Physics 38, no. 9 (September 1997): 4832–44. http://dx.doi.org/10.1063/1.532127.

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Szafraniec, Franciszek Hugon. "On matrix integration of matrix polynomials." Journal of Computational and Applied Mathematics 133, no. 1-2 (August 2001): 611–21. http://dx.doi.org/10.1016/s0377-0427(00)00684-1.

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Fan, Jicong, and Jieyu Cheng. "Matrix completion by deep matrix factorization." Neural Networks 98 (February 2018): 34–41. http://dx.doi.org/10.1016/j.neunet.2017.10.007.

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Bini, D. "Matrix structures in parallel matrix computations." Calcolo 25, no. 1-2 (March 1988): 37–51. http://dx.doi.org/10.1007/bf02575746.

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37

Beitia, Ma Asunción, and Juan-Miguel Gracia. "Sylvester matrix equation for matrix pencils." Linear Algebra and its Applications 232 (January 1996): 155–97. http://dx.doi.org/10.1016/0024-3795(94)00044-1.

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Cardoso, João R., and Amir Sadeghi. "Conditioning of the matrix-matrix exponentiation." Numerical Algorithms 79, no. 2 (November 25, 2017): 457–77. http://dx.doi.org/10.1007/s11075-017-0446-2.

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39

Buhl, Geoffrey, Elijah Cronk, Rosa Moreno, Kirsten Morris, Dianne Pedroza, and Jack Ryan. "Matrix completions for linear matrix equations." Involve, a Journal of Mathematics 10, no. 5 (May 14, 2017): 781–99. http://dx.doi.org/10.2140/involve.2017.10.781.

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Danchaivijit, Sawai, and Dinesh K. Shetty. "Matrix Cracking in Ceramic-Matrix Composites." Journal of the American Ceramic Society 76, no. 10 (October 1993): 2497–504. http://dx.doi.org/10.1111/j.1151-2916.1993.tb03972.x.

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Li, Wei. "Practical criteria for positive-definite matrix, M-matrix and Hurwitz matrix." Applied Mathematics and Computation 185, no. 1 (February 2007): 397–401. http://dx.doi.org/10.1016/j.amc.2006.06.098.

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42

Halawa, Wartalena Irene, and Thyophoida W. S. Panjaitan. "Penetapan Strategi Pemasaran Berdasarkan Analisis Swot Pada Wheels And Brakes Café Surabaya." Improvement: Jurnal Manajemen dan Bisnis 1, no. 2 (September 30, 2021): 154. http://dx.doi.org/10.30651/imp.v1i2.10634.

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Wheels and Brakes Café is one of the cafes in Surabaya in January 2017. The evaluation process will certainly help in achieving Cafe Owners' desire to increase Cafe's income. One of the tools that can be used to conduct the evaluation is SWOT Analysis (Strength, Weakness, Opportunities, Threats).Informants in this study were Cafe Managers, Cafe Employees, and Key Consumers. In this study also used other tools besides SWOT Matrix, namely SPACE Matrix, IFAS Matrix, EFAS Matrix, and IE Matrix. The SPACE matrix has x, y coordinates (1.5; -0.5) which indicate that the Cafe is in quadrant III with a Competitive Strategy. In IFAS Matrix, the total internal factor value is 2.77 while the EFAS Matrix has a total external factor value of 3.05. After combining the IFAS and EFAS values, in the IE Matrix it was found that Wheels and Brakes Café Surabaya was in position II which indicated that the position of the Cafe was in growing conditions and Horizontal Integration strategy suggestions.The results of this study indicate that the right strategy to use Wheels and Brakes Café Surabaya is the Horizontal Integration Strategy. This strategy takes into account market penetration, market development, and product renewal. This strategy is certainly right for Wheels and Brakes Café Surabaya to be more competitive in the restaurant and cafe business.Wheels and Brakes Café merupakan salah satu Kafe di Surabaya pada Januari 2017. Proses evaluasi yang dilakukan tentu akan membantu dalam mencapai keinginan Pemilik Kafe dalam meningkatkan pendapatan Kafe. Salah satu alat yang bisa digunakan untuk melakukan evaluasi tersebut ialah Analisis SWOT (Strength, Weakness, Opportunities, Threats).Informan dalam penelitian ini ialah Manajer Kafe, Karyawan Kafe, dan Konsumen Kunci. Dalam penelitian ini juga digunakan alat bantu lain selain Matrik SWOT yaitu Matrik SPACE, Matrik IFAS, Matrik EFAS, dan Matrik IE. Matrik SPACE didapatkan koordinat x,y (1,5 ; -0,5) yang menunjukkan bahwa Kafe berada di kuadran III dengan Strategi Kompetitif. Pada Matrik IFAS didapatkan nilai total faktor internal sebesar 2,77 sedangkan pada Matrik EFAS total nilai faktor eksternal sebesar 3,05. Setelah menggabungkan antara nilai IFAS dan EFAS, pada Matrik IE didapatkan bahwa Wheels and Brakes Café Surabaya berada di posisi II yang menunjukkan bahwa posisi Kafe dalam kondisi bertumbuh dan saran strategi Integrasi Horizontal.Hasil penelitian ini menunjukkan bahwa Strategi yang tepat untuk digunakan Wheels and Brakes Café Surabaya ialah Strategi Integrasi Horizontal. Strategi ini memperhatikan Penetrasi pasar, Pengembangan Pasar, dan Pembaharuan Produk. Strategi ini tentunya tepat bagi Wheels and Brakes Café Surabaya untuk lebih kompetitif dalam bisnis Restoran dan Kafe.Keywords: SWOT, Entrepreneur, Cafe, Opportunity, Position, Strategy
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Ježek, Jan. "An efficient algorithm for computing real powers of a matrix and a related matrix function." Applications of Mathematics 33, no. 1 (1988): 22–32. http://dx.doi.org/10.21136/am.1988.104283.

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Artemov, Anton G., and Emanuel H. Rubensson. "Sparse approximate matrix-matrix multiplication for density matrix purification with error control." Journal of Computational Physics 438 (August 2021): 110354. http://dx.doi.org/10.1016/j.jcp.2021.110354.

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Le, P., D. Y. Zang, and Chen S. Tsai. "Integrated electrooptic Bragg modulator modules for matrix–vector and matrix–matrix multiplications." Applied Optics 27, no. 9 (May 1, 1988): 1780. http://dx.doi.org/10.1364/ao.27.001780.

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Zha, Xin-Wei, Jian-Xia Qi, and Hai-Yang Song. "Efficiency criterion for teleportation via channel matrix, measurement matrix and collapsed matrix." Results in Physics 6 (2016): 505–8. http://dx.doi.org/10.1016/j.rinp.2016.07.005.

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B, Saberi. "Glioma and Extracellular Matrix, A Review on the Integrins as the Receptors of the Extracellular Matrix." Bioequivalence & Bioavailability International Journal 7, no. 1 (January 4, 2023): 1–2. http://dx.doi.org/10.23880/beba-16000190.

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The brain extracellular matrix is a complex structure. The invading tumors like gliomas would interact with the extracellular matrix. There are receptors in the extracellular matrix including Integrins. This brief review tries to point to some important notes about the extracellular matrix and Integrins as a group of receptors in the extracellular matrix which can play the important role in the pathogenesis of gliomas in the brain tissue
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Song, Caiqin, Jun-e. Feng, Xiaodong Wang, and Jianli Zhao. "A Real Representation Method for Solving Yakubovich-j-Conjugate Quaternion Matrix Equation." Abstract and Applied Analysis 2014 (2014): 1–9. http://dx.doi.org/10.1155/2014/285086.

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A new approach is presented for obtaining the solutions to Yakubovich-j-conjugate quaternion matrix equationX−AX^B=CYbased on the real representation of a quaternion matrix. Compared to the existing results, there are no requirements on the coefficient matrixA. The closed form solution is established and the equivalent form of solution is given for this Yakubovich-j-conjugate quaternion matrix equation. Moreover, the existence of solution to complex conjugate matrix equationX−AX¯B=CYis also characterized and the solution is derived in an explicit form by means of real representation of a complex matrix. Actually, Yakubovich-conjugate matrix equation over complex field is a special case of Yakubovich-j-conjugate quaternion matrix equationX−AX^B=CY. Numerical example shows the effectiveness of the proposed results.
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Setiyowati, Harlis, Ratna Setiawati, Surjo Widodo, Soni Hartanto, and Dewa Gede Satriawan. "The Educational Tourism at "JAWA TIMUR Park-3" During the Covid-19 Pandemic; SWOT Analysis." TOBA: Journal of Tourism, Hospitality and Destination 1, no. 2 (June 28, 2022): 69–74. http://dx.doi.org/10.55123/toba.v1i2.424.

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Wisata Jawa Timur Park (JTP-3) adalah wisata edukasi pertama di Indonesia dalam menyajikan ratusan patung lilin dari para tokoh dan artis dunia dan replika tempat favorit dari berbagai Negara. Lokasi JTP-3 di Jl. Ir. Soekarno No.144, Junrejo, Batu, Jawa Timur. Metodologi penelitian menggunakan metode kualitatif dengan analisis Strengths-Weaknesses-Opportunities-Threats (SWOT) dengan tahapan yaitu Internal Factor Evaluation Matrix (Matrik IFE), Eksternal Faktor Evaluation Matrix (Matrik EFE), Internal and external Matrix (Matrik IE), dan Quantitative Strategic Planning Matrix (Matrik QSPM). Hasil menunjukkan bahwa posisi JTP-3 berada pada kuadran I yaitu posisi yang sangat menguntungkan. JTP-3 memiliki peluang dan kekuatan sehingga dapat memanfaatkan peluang yang ada. Strategi yang harus diterapkan adalah mendukung kebijakan pertumbuhan yang agresif (growth oriented strategy). Peneliti selanjutnya diharapkan untuk menerapan manajemen pengetahuan yang difokuskan pada peningkatan kompetensi per individu sehingga jika terjadi pengurangan pegawai tidak akan menjadi masalah. Untuk meningkatkan perekonomian dan kesejahteraan masyarakat, diperlukan komitmen bersama seluruh pemangku kepentingan dan masyarakat untuk dapat memperoleh manfaat secara optimal melalui pendekatan ilmiah, sosial, politik, ekologi dan ekonomi.
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SINHA, BAKSHI OM PRAKASH, and NARENDRA PRASAD. "Construction of Matrix in Multiplicative Matrix form." Journal of Ultra Scientist of Physical Sciences Section A 29, no. 10 (October 2, 2017): 418–26. http://dx.doi.org/10.22147/jusps-a/291002.

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