The Government College for Women, Anantnag, is a college in Jammu and Kashmir (J&K) state under Indian governance. It was established in 1979 as an intermediate college in the heart of Anantnag town.
This study attempts to evaluate the impact of the four critical constructs of altruism, innovativeness, self-enhancement, and involvement on the likelihood of creating travel-related content on social media in India. Due to prominence of user-generated content (UGC) in shaping travel decisions, there is limited understanding about how user-generated social media content influences tourists’ behavioural intentions in Indian context. Hence, this research is an initial endeavour to understand the motivations for social media content creation. After a thorough literature review, a conceptual framework is formed, and original research hypotheses are formulated. A purposive sampling technique was deployed to reach the respondents. The study uses survey data collected from 539 respondents using online data collection methods, field surveys, and social network data that are analyzed with structural equation modeling (SEM). The findings confirm the positive impact of innovativeness, altruism, self-enhancement, and involvement in travel-related content creation on social media. Involvement had the strongest impact followed by self-enhancement. Innovativeness had significant but least impact as compared to others. A major limitation of the previous studies was that the constructs of innovativeness, altruism, self-enhancement, and involvement, although of crucial importance, have never been investigated collectively in a holistic model so far. Therefore, this study expands the literature by simultaneously testing these constructs on travel-related content creation on social media. This research further explains determinants of content creation on social media through the lens of Social Exchange Theory and Expectation Confirmation Theory thereby extending these theories in the context of tourism. The study’s results offer practical guidance for tourism marketers to craft effective social media content strategies that enhance traveler engagement and influence decision-making. Additionally, the findings can inform the development of recommendation systems integrated with social media platforms to suggest personalized travel options and assist travelers in making informed choices.
T. Huber, D. Schultz and D. Ye have obtain four Eisenstein series idenities of level 20 and employed them to obtain a new series for 1/π . Motivated by this, in this article, we obtain nine new Eisenstein series identities of level 20 and give their Combinatorial properties.
The distribution of the sum of two independent Lindley random variables having the same parameter defines the 2S-Lindley distribution recently introduced in the statistical literature. In this paper, we use it to create a new one-parameter discrete compound distribution called the Poisson 2S-Lindley distribution. More precisely, it is obtained by compounding the Poisson and 2S-Lindley distributions with the idea of combining their desirable functionalities. The mathematical and statistical properties of the proposed distribution are investigated and analyzed systematically. Subsequently, a statistical standpoint is adopted. Various estimation methods are considered, and an extensive simulation study is conducted to compare them. A count regression model as well as a first-order integer-valued autoregressive process based on the proposed model are constructed. In total, four real data sets in different fields are used to prove the empirical importance of the distribution.
Niobium (Nb) and Neodymium (Nd) co-doped TiO2 nanoparticles have been synthesized with varying weight concentration and subjected to Fourier Transform Infrared Spectroscopy (FTIR), Ultraviolet Visible Spectroscopy (UV-Visible), Photoluminescence Spectroscopy (PL), Raman and X-ray Diffraction (XRD) spectroscopic studies. Hydrothermal synthesis has been carried out to obtain good yield without any impurities. Optical analysis of the materials with dopant and co-dopant revealed the absorption of energy in the visible region due to the generation of new energy levels in the bandgap of TiO2. The emission in PL inferred that, the increase in the injection of electrons in the additional energy levels with broad peak at 450 nm and sharpened peak at 525 nm with the dopants. The vibrational mode obtained from Raman spectroscopy confirmed the functional groups and the bonding nature of Nb and Nd with TiO2. The rutile and anatase phase of the TiO2 molecules is confirmed with the diffraction peaks obtained at specific angles and referred with JCPDS card number. From the analysis, it is inferred that the Nb/Nd co-doped TiO2 is suitable for photovoltaic applications.
For the first time, natural dye was extracted using ethanol from the fruits of Pouteria campechiana and used to soak the Nb/Nd co-doped TiO2 coated FTO substrate which served as photoanode of dye sensitized solar cell. X-Ray diffraction, photoluminscence and Raman spectroscopy were used to analyse the structural, vibrational and emission characteristics of the pure and Nb/Nd co-doped TiO2 samples. The sensitizer soaked Nb/Nd co-doped TiO2 over FTO substrate was sandwiched with the graphite coated FTO incorporated with the redox couple of iodine/triiodide (I–/I3–) occupying the layer between the photoanode and counter electrode to fabricate the solar cell architecture as FTO/Nb/Nd-TiO2/dye/I–/I3–/graphite-TiO2/FTO. JV characteristic study was carried out for the solar cells with and without Nb/Nd co-doped TiO2 with the sensitizer and it was found that, the solar cell with Nb/Nd co-doped TiO2 produced an efficiency of 0.83