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S. Marković, A. Jelić

The main purpose of this study is to specify the basic perceptual dimensions underlying the judgments of the physical features which define the style in paintings (e.g. salient form, colorful surface, oval contours etc.). The other aim of the study is to correlate these dimensions with the subjective (affective) dimensions of the experience of paintings. In the preliminary study a set of 25 pairs of elementary perceptual descriptors were empirically specified, and a set of 25 bipolar scales were made (e.g. uncolored-multicolored). In the experiment 30 subjects judged 24 paintings (paintings were taken from the study of Radonjic and Markovic, 2004) on 25 scales. Factor analysis revealed the four factors: form (scales: precise, neat, salient form etc.), color (color contrast, lightness contrast, vivid colors), space (voluminosity, depth and oval contours) and complexity (multicolored, ornate, detailed). Obtained factors reflected the nature of the phenomenological and neural segregation of form, color, depth processing, and partially of complexity processing (e.g. spatial frequency processing within both the form and color subsystem). The aim of the next step of analysis was to specify the correlations between two groups of judgments: (a) mean judgments of 24 paintings on perceptual factors and (b) mean judgments of the same set of 24 paintings on subjective (affective) experience factors, i.e. regularity, attraction, arousal and relaxation (judgments taken from Radonjic and Markovic, 2005). The following significant correlations were obtained: regularity-form, regularity-space, attraction-form and arousal-complexity (negative correlation). The reasons for the unexpected negative correlation between arousal and complexity should be specified in further studies.

I. Doršner, P. F. Pérez, G. Rodrigo

We investigate the predictions for fermion masses in the min imal realistic non-supersymmetric SU(5) model with the Standard Model matter content. The possibili ty to achieveb− τ unification is studied taking into account all relevant effects. In additi on, we show how to establish an upper bound on the ultraviolet cutoffΛ of the theory which is compatible with the Yukawa couplings a t the grand unified scale and proton decay. We find Λ ≃ 10 GeV, to be considered a conservative upper bound on the cutoff. We also provide up-to-date values of all the fe rmions masses at the electroweak scale.

M. Usčuplić, Mirza Dautbašić, T. Treštić, A. Dundjer, I. Abrudan, G. Spârchez, I. Oprea, D. Simon et al.

P. Di Martino, C. Barthélémy, E. Joiris, D. Capsoni, A. Masic, V. Massarotti, R. Gobetto, M. Bini et al.

N. Zaimovic-Uzunovic, Amir Abazović, Jasmina Nišić-Tica, S. Mujić, Š. Ališić, Narcisa Jarović, Ganić Elvedin, Haračić Hakim et al.

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