Research Institute for Environment Treatment, Zaporozhye, Ukraine.
Vita-Market Ltd, Zaporozhye, Ukraine.
Ann N Y Acad Sci. 2022 Jul;1513(1):65-78. doi: 10.1111/nyas.14771. Epub 2022 Mar 25.
Development of nondestructive techniques for estimating egg parameters requires a comprehensive approach based on mathematical theory. Basic properties used to solve theoretical and applied problems in this respect are volume (V) and surface area (S). There are respective formulae for calculating V and S of spherical, ellipsoidal, and ovoid eggs in classical egg geometry; however, the mathematical description and calculation of these parameters for pyriform eggs have remained elusive. In the present study, we derived the appropriate formulae and established that this would be not only applicable and valid for the category of pyriform eggs, but also universal and explicit for all other naturally occurring avian egg shapes. Thus, we have demonstrated "mathematical progression" of this natural object, considering the egg as a sequence of geometric figures that transform from one to another in the following sequence of shapes: sphere → ellipsoid → ovoid (whose profile corresponds to Hügelschäffer's model) → pyriform ovoid.
发展用于估计蛋参数的无损技术需要基于数学理论的综合方法。在这方面用于解决理论和应用问题的基本属性是体积(V)和表面积(S)。在经典蛋几何中,有用于计算球形、椭圆形和卵形蛋的 V 和 S 的相应公式;然而,对于梨形蛋,这些参数的数学描述和计算仍然难以捉摸。在本研究中,我们推导出了适当的公式,并确定这些公式不仅适用于梨形蛋类别,而且对所有其他自然发生的禽类蛋形状也是通用和明确的。因此,我们已经证明了这个自然物体的“数学进展”,将蛋视为一系列几何图形,它们按照以下形状序列从一个到另一个转换:球→ 椭圆→卵形(其轮廓对应于 Hügelschäffer 的模型)→梨形卵形。