Buku Ajar Interaktif Ekologi Satwa Liar (E-sali) Berbasis Augmented Reality (AR) Dan Virtual Reality (VR)

Authors

Siti Rabiatul Fajri, S.Si., M.Pd; Prof. Dr Desak Made Citrawathi, M.Kes; Prof. Dr Putu Budi adnyana, M.Si; Prof. Dr. Ida Bagus Putu Arnyana, M.Si

Synopsis

SPESIFIKASI BUKU

Harga                    : Rp 125.000

Ukuran                  : 18 x 25 cm

Jumlah Halaman : 253 hal

Ketebalan Buku  : 2  cm

ISBN                       : On Proses

Deskripsi Buku   : Buku ajar interaktif Ekologi Satwa Liar (E-SALI) berbasis Augmented Reality (AR) dan Virtual Reality (VR) ini hadir sebagai upaya inovatif dalam memfasilitasi pemahaman yang lebih mendalam mengenai hubungan antara satwa liar dengan lingkungannya. Buku ini mengusung pendekatan pembelajaran yang menggabungkan teknologi AR dan VR, untuk memberikan pengalaman belajar yang imersif dan interaktif. Melalui teknologi ini, pembaca dapat merasakan pengalaman belajar seolah-olah mereka berada di habitat satwa liar, mengatasi keterbatasan yang biasanya ada dalam pembelajaran konvensional yang bergantung pada teori semata. Pembaca tidak hanya memperoleh pengetahuan dari literatur ilmiah, tetapi juga terlibat langsung dalam simulasi yang memvisualisasikan konsep-konsep ekologi satwa liar dengan cara yang lebih nyata dan mendalam. Keunggulan buku ini juga terletak pada konten yang didasarkan pada observasi langsung di berbagai ekosistem Pulau Lombok, yang memperkenalkan keanekaragaman satwa liar khas daerah tersebut. Sehingga menjadikan buku ini tidak hanya sebagai referensi ilmiah, tetapi juga sebagai alat pembelajaran yang berbasis pengalaman. Semoga buku ini bermanfaat bagi pengembangan pengetahuan dan kesadaran konservasi di kalangan pembaca, serta dapat menjadi sumber daya yang mendukung upaya pelestarian satwa liar dan ekosistem alam Indonesia.

 

REFERENSI :

Abduh, M., Budianta, D., Arinafril, A., & Erina, L. (2019). Geographical and level of local government variation on the phenomenon of ecological footprint in Indonesia: Descriptive analysis. Sriwijaya Journal of Environment. https://doi.org/10.22135/sje.2019.4.3.123-132

Actuti, N., S. S. I., M. S. I., A., & Nurdiansyah, S. I. (2019). Keanekaragaman kepiting biola (Uca spp.) di ekosistem mangrove Desa Pasir Kabupaten Mempawah Kalimantan Barat. Jurnal Laut Khatulistiwa, 2(1), 25. https://doi.org/10.26418/lkuntan.v2i1.30162

Adi, M. T. A., Sulardiono, B., & Rudiyanti, S. (2022). Struktur komunitas perifiton pada akar mangrove Rhizopora sp. di pesisir Desa Timbulsloko, Kecamatan Sayung, Kabupaten Demak. Jurnal Pasir Laut, 6(2), 97–104. https://doi.org/10.14710/jpl.2022.59802

Agetsuma, N., Koda, R., Tsujino, R., & Agetsuma-Yanagihara, Y. (2015). Effective spatial scales for evaluating environmental determinants of population density in Yakushima macaques. American Journal of Primatology, 77(2), 152–161. https://doi.org/10.1002/ajp.22318

Alldredge, M. W., Buderman, F. E., & Blecha, K. A. (2019). Human–cougar interactions in the wildland–urban interface of Colorado’s Front Range. Ecology and Evolution, 9(18), 10415–10431. https://doi.org/10.1002/ece3.5559

Anantharaman, K., Brown, C. T., Hug, L., Sharon, I., Castelle, C. J., Probst, A. J., Thomas, B. C., Singh, A., Wilkins, M. J., Karaöz, U., Brodie, E., Williams, K. H., Hubbard, S. S., & Banfield, J. F. (2016). Thousands of microbial genomes shed light on interconnected biogeochemical processes in an aquifer system. Nature Communications. https://doi.org/10.1038/ncomms13219

Asri, A. S., Yanuwiadi, & Bagyo. (2015). Persepsi masyarakat terhadap ular sebagai upaya konservasi satwa liar pada masyarakat Dusun Kopendukuh, Desa Grogol, Kecamatan Giri, Kabupaten Banyuwangi. J-PAL, 16(1).

Aumont, O., Maier-Reimer, E., Blain, S., & Monfray, P. (2003). An ecosystem model of the global ocean including Fe, Si, P colimitations. Global Biogeochemical Cycles. https://doi.org/10.1029/2001GB001745

Axelsson, R., Angelstam, P., Degerman, E., Teitelbaum, S., Andersson, K., Elbakidze, M., & Drotz, M. K. (2013). Social and cultural sustainability: Criteria, indicators, verifier variables for measurement and maps for visualization to support planning. Ambio. https://doi.org/10.1007/s13280-012-0376-0

Bardgett, R. D., & Wardle, D. A. (2003). Herbivore-mediated linkages between aboveground and belowground communities. Ecology. https://doi.org/10.1890/02-0274

Barela, I., Burger, L. M., Taylor, J., Evans, K. O., Ogawa, R., McClintic, L., & Wang, G. (2020). Relationships between survival and habitat suitability of semi-aquatic mammals. Ecology and Evolution, 10(11), 4867–4875. https://doi.org/10.1002/ece3.6239

Barneche, D. R., Hulatt, C. J., Dossena, M., Padfield, D., Woodward, G., Trimmer, M., & Yvon-Durocher, G. (2021). Warming impairs trophic transfer efficiency in a long-term field experiment. Nature, 592(7852), 76–79. https://doi.org/10.1038/s41586-021-03352-2

Barton, P. S., Evans, M. J., Foster, C. N., Pechal, J. L., Bump, J. K., Quaggiotto, M.-M., & Benbow, M. E. (2019). Towards quantifying carrion biomass in ecosystems. Trends in Ecology & Evolution. https://doi.org/10.1016/j.tree.2019.06.001

Bauer, S., Hoye, B., & Hoye, B. (2014). Migratory animals couple biodiversity and ecosystem functioning worldwide. Science, 344. https://doi.org/10.1126/science.1242552

Berger, J., Stacey, P., Bellis, L., & Johnson, M. P. (2001). A mammalian predator–prey imbalance: Grizzly bear and wolf extinction affect avian Neotropical migrants. Ecological Applications. https://doi.org/10.1890/1051-0761(2001)011[0947:AMPPIG]2.0.CO;2

Binkley, D. (2015). Ecosystems in four dimensions. New Phytologist, 206(3), 883–885. https://doi.org/10.1111/nph.13379

Blair, J. M., Parmelee, R. W., & Beare, M. H. (1990). Decay rates, nitrogen fluxes, and decomposer communities of single- and mixed-species foliar litter. Ecology. https://doi.org/10.2307/1937606

Borrelli, N., Álvarez, M. F., Osterrieth, M., & Marcovecchio, J. E. (2010). Silica content in soil solution and its relation with phytolith weathering and silica biogeochemical cycle in typical Argiudolls of the Pampean Plain, Argentina—a preliminary study. Journal of Soils and Sediments. https://doi.org/10.1007/s11368-010-0205-7

Bowman, W. D., & Hacker, S. D. (2023). Population growth and regulation. In Ecology. Oxford University Press. https://doi.org/10.1093/hesc/9780197614044.003.0018

Brownlee, M. B., Warbington, C. H., & Boyce, M. S. (2022). Monitoring sitatunga (Tragelaphus spekii) populations using camera traps. African Journal of Ecology, 60(3), 377–385. https://doi.org/10.1111/aje.12972

Burton, A. C., Neilson, E., Moreira, D., Ladle, A., Steenweg, R., Fisher, J. T., Bayne, E., & Boutin, S. (2015). Review: Wildlife camera trapping: A review and recommendations for linking surveys to ecological processes. Journal of Applied Ecology, 52(3), 675–685. https://doi.org/10.1111/1365-2664.12432

C. Hopcraft, J. G., Olff, H., & E. Sinclair, A. R. (2010). Herbivores, resources and risks: Alternating regulation along primary environmental gradients in savannas. Trends in Ecology & Evolution. https://doi.org/10.1016/j.tree.2009.08.001

Carbone, C., Turvey, S. T., & Bielby, J. (2011). Intra-guild competition and its implications for one of the biggest terrestrial predators, Tyrannosaurus rex. Proceedings of the Royal Society B: Biological Sciences. https://doi.org/10.1098/rspb.2010.2497

Carscadden, K. A., Emery, N. C., Arnillas, C. A., Cadotte, M. W., Afkhami, M. E., Gravel, D., Livingstone, S. W., & Wiens, J. J. (2020a). Niche breadth: Causes and consequences for ecology, evolution, and conservation. The Quarterly Review of Biology, 95(3), 179–214. https://doi.org/10.1086/710388

Carscadden, K. A., Emery, N. C., Arnillas, C. A., Cadotte, M. W., Afkhami, M. E., Gravel, D., Livingstone, S. W., & Wiens, J. J. (2020b). Niche breadth: Causes and consequences for ecology, evolution, and conservation. The Quarterly Review of Biology, 95(3), 179–214. https://doi.org/10.1086/710388

Carter, B. E., & Alroy, J. (2022). The macroecology of community energy use in terrestrial vertebrates. Frontiers of Biogeography, 14(3). https://doi.org/10.21425/F5FBG56553

Cary, L., Alexandre, A., Meunier, J., Boeglin, J.-L., & Braun, J. (2005). Contribution of phytoliths to the suspended load of biogenic silica in the Nyong Basin rivers (Cameroon). Biogeochemistry. https://doi.org/10.1007/s10533-004-2945-1

Published

August 11, 2026

Details about the available publication format: Pratinjau Buku

Pratinjau Buku

Physical Dimensions

Details about the available publication format: Beli Buku

Beli Buku

Physical Dimensions