References
[1]. Agarwala, S. C., Nautiyal, B. D., Chatterjee, C., & Sharma, C. P. (1988). Manganese, zinc and boron deficiency in mango. Scientia Horticulturae, 35(1-2), 99- 107.
[2]. Bally, I. E. (2009). Crop production: Mineral nutrition. In nd The Mango, Botany, Production and Uses, 2 Ed. (pp. 404-431). CAB International, Wallingford.
[3]. Bhat, B. B., & Mir, R. A. (2015). Physicochemical assessment of Soil in Doiwala Dehradun District of Uttrakhand (India). International Journal of Innovative Research and Development, 4(10), 63-69.
[4]. Burbon, J. N., Moore, K. G., & Wainwright, H. (1992). A preliminary examination of the physiological disorder sofnose in mango fruit. Acta Horticulture, 296, 15-22.
[5]. Burdon, J. N., Moore, K. G., & Wainwright, H. (1991). Mineral distribution in mango fruit susceptible to the physiological disorder soft-nose. Scientia Horticulturae, 48(3-4), 329-336.
[6]. Chaudhari, K. G. (2013). Studies of the physicochemical parameters of soil samples. Advances in Applied Science Research, 4(6), 246-248.
[7]. Childers, N. F. (1966). Temperate to Tropical Fruit Nutrition. New Jersey. Horticultural Publications.
[8]. Jackson, M. L. (1971). Soil Chemical Analysis. Prentice Hall of India Pvt. Ltd., New Delhi, India.
[9]. Jacob, A., & von Uexküll, H. (1960). Fertilizer Use. Nutrition and Manuring of Tropical Crops. (2nd Ed). Hanover: Verlagsgesellschaft fur Ackerbau mBH.
[10]. Kanga, S., Sharma, L. K., Pandey, P. C., Nathawat, M. S., & Sharma, S. K. (2013). Forest fire modeling to evaluate potential hazard to tourism sites using geospatial approach. Journal of Geomatics, 7(1), 93-99.
[11]. Koo, R. C. (1968). Potassium nutrition of tree crops. In The Role of Potassium in Agriculture, Ed., (pp. 469-487). American Society of Agronomy.
[12]. Kumar, S., & Nauriyal, J. P. (1977). Nutritional Studies on Mango - Tentative Leaf Analysis Standards. Indian Journal of Horticulture, 34(2), 100-106.
[13]. Olsen, S. R. (1954). Estimation of available phosphorus in soils by extraction with sodium bicarbonate. United States Department of Agriculture, Washington.
[14]. Pandey, A. C., Singh, S. K., Nathawat, M. S., & Saha, D. (2013). Assessment of surface and subsurface waterlogging, water level fluctuations, and lithological variations for evaluating groundwater resources in Ganga Plains. International Journal of Digital Earth, 6(3), 276- 296.
[15]. Poffley, M., & Owens G. (2005). Mango Leaf and Soil Analysis. Agnote, Nothern Territory Government.
[16]. Prado, R. M., Caione, G., & Silva, D. J. (2012). Macronutrients and micronutrients deficiency symptoms in mango. In Mango Production and Processing Technologies (Ed.), (pp. 470-478). Valavi, SG.
[17]. Rajendren, K., Veeraputhiran, R. Agric. (2001). Rev., 22(l), 68-70.
[18]. Sarwar, G., Schmeisky, H., Hussain, N., Muhammad, S., Ibrahim, M., & Safdar, E. (2008). Improvement of soil physical and chemical properties with compost application in rice-wheat cropping system. Pakistan Journal of Botany, 40(1), 275-282.
[19]. Sharpley, A. N., Chapra, S. C., Wedepohl, R., Sims, J. T., Daniel, T. C., & Reddy, K. R. (1994). Managing agricultural phosphorus for protection of surface waters: Issues and options. Journal of Environmental Quality, 23(3), 437-451.
[20]. Singh, S. K., Chandel, V., Kumar, H., & Gupta, H. (2014). RS & GIS based urban land use change and site suitability analysis for future urban expansion of Parwanoo planning area, Solan, Himachal Pradesh (India). Intl. J. Dev. Res., 4(8), 1491-1503.
[21]. Sinha, S., Pandey, P. C., Sharma, L. K., Nathawat, M. S., Kumar, P., & Kanga, S. (2014). Remote estimation of land surface temperature for different LULC features of a moist deciduous tropical forest region. In Remote Sensing Applications in Environmental Research (pp. 57-68). Springer, Cham.
[22]. Walkeley, A. (1947). A critical examination of a rapid method for determination of organic carbon in soils: Effect of variation in digestion conditions and of inorganic soil constituents. Soil Sci., 63, 251-257.