نتایج جستجو برای: Augmented Zagreb index

تعداد نتایج: 447834  

2017
Lea Milutinović Marijana Braš Veljko Đorđević

Lea Milutinović1, Marijana Braš2,3, Veljko Đorđević3 1University of Zagreb School of Medicine, Student Society for Neuroscience, Zagreb, Croatia, 2Zagreb University Hospital Centre, Department of Psychological Medicine, Zagreb, Croatia, 3University of Zagreb School of Medicine, Centre for Palliative Medicine, Medical Ethics and Communication Skills, Zagreb, Croatia / 1Sveučilište u Zagrebu, Med...

2015
Ivan Bohaček

School of Medicine, University of Zagreb, Croatia (VI, MJ); School of Medicine, University of Zagreb, Department of Nephrology, Hypertension, Dialysis and Transplantation, University Hospital Center Zagreb, Croatia (ML, AV, SK, JK, TZ, VP, MZ, BJ); School of Medicine, University of Zagreb, Department of Metabolic Disorders, University Hospital Center Zagreb, Zagreb, Croatia (IP); and School of ...

2018
Tajana Borlinić Tamara Knežević Lana Gellineo Maja Franceschi Zrinka Bukvić Mokos Nikolina Bašić-Jukić

1Čakovec General Hospital, Čakovec, Croatia; 2University Hospital Centre Zagreb, Department of Nephrology, Arterial Hypertension, Dialysis and Transplantation, Zagreb, Croatia; 3Sestre milosrdnice University Hospital Centre, Department of Nuclear Medicine, Zagreb, Croatia; 4University Hospital Centre Zagreb, Department of Dermatology and Venereology, Zagreb, Croatia; 5University of Zagreb Schoo...

J. ‎Hashemi‎ M. R. ‎Darafsheh V. Ahmadi,

‎Let G=(V,E) be a simple connected graph with vertex set V and edge set E. The first, second and third Zagreb indices of G are respectivly defined by: $M_1(G)=sum_{uin V} d(u)^2, hspace {.1 cm} M_2(G)=sum_{uvin E} d(u).d(v)$ and $ M_3(G)=sum_{uvin E}| d(u)-d(v)| $ , where d(u) is the degree of vertex u in G and uv is an edge of G connecting the vertices u and v. Recently, the first and second m...

Journal: :AIMS mathematics 2022

<abstract><p>In this work we obtain new lower and upper optimal bounds of general Sombor indices. Specifically, get inequalities for these indices relating them with other indices: the first Zagreb index, forgotten index variable index. Finally, solve some extremal problems indices.</p></abstract>

2015
Zrinka Rendić-Miočević Antonio Juretić Lidija Beketić-Orešković

1 University Hospital for Tumors, Clinical Hospital Centre “Sestre Milosrdnice”, Zagreb, Croatia; 2 University of Zagreb School of Medicine, Department of Clinical Oncology, and University Hospital Center Zagreb, Oncology Clinic, Zagreb, Croatia; 3 University of Zagreb School of Medicine, Department of Clinical Oncology, and University Hospital for Tumors, Clinical Hospital Centre “Sestre Milos...

2011
Vera Čuljak Iva Franjić Roqia Ghulam Josip Pečarić Matti K. Vuorinen

1 Department of Mathematics, Faculty of Civil Engineering, University of Zagreb, Kačićeva 26, 10000 Zagreb, Croatia 2 Faculty of Food Technology and Biotechnology, University of Zagreb, Pierottijeva 6, 10000 Zagreb, Croatia 3 Abdus Salam School of Mathematical Sciences, 68-B, New Muslim Town, Lahore 54600, Pakistan 4 Faculty of Textile Technology, University of Zagreb, Prilaz baruna Filipovića ...

Journal: :Psychiatria Danubina 2012
Martina Rojnic Kuzman Vesna Medved Vedran Velagic Eleonora Goluza Zoran Bradas

THE USE OF ELECTROCONVULSIVE THERAPY TO TREAT SCHIZOAFFECTIVE DISORDER IN A PATIENT WITH PACEMAKER: A CASE REPORT Martina Rojnic Kuzman, Vesna Medved, Vedran Velagic, Eleonora Goluza & Zoran Bradas Department of Psychiatry, University Hospital Centre Zagreb, Zagreb, Croatia Department of Cardiovascular Medicine, University Hospital Centre Zagreb, Zagreb, Croatia Department of Anesthesiology, Un...

Journal: :AKCE International Journal of Graphs and Combinatorics 2021

Let $A(G)$ be the adjacency matrix and $D(G)$ diagonal of vertex degrees a simple connected graph $G$. Nikiforov defined $A_{\alpha}(G)$ convex combinations as $A_{\alpha}(G)=\alpha D(G)+(1-\alpha)A(G)$, for $0\leq \alpha\leq 1$. If $ \rho_{1}\geq \rho_{2}\geq \dots \geq \rho_{n}$ are eigenvalues (which we call $\alpha$-adjacency $G$), \alpha $-adjacency energy $G$ is $E^{A_{\alpha}}(G)=\sum_{i...

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