SurfaceAreaNRGE
is used to calculate the surface area of an egg that follows the Narushin-Romanov-Griffin equation.
SurfaceAreaNRGE(P, subdivisions = 100L,
rel.tol = .Machine$double.eps^0.25, abs.tol = rel.tol,
stop.on.error = TRUE, keep.xy = FALSE, aux = NULL)
the parameters of the Narushin-Romanov-Griffin equation.
please see the arguments for the integrate
function in package stats.
please see the arguments for the integrate
function in package stats.
please see the arguments for the integrate
function in package stats.
please see the arguments for the integrate
function in package stats.
please see the arguments for the integrate
function in package stats.
please see the arguments for the integrate
function in package stats.
Peijian Shi pjshi@njfu.edu.cn, Johan Gielis johan.gielis@uantwerpen.be, Brady K. Quinn Brady.Quinn@dfo-mpo.gc.ca.
The formula of the surface area (\(S\)) of an egg based on the Narushin-Romanov-Griffin equation is:
$$S(x)=2\,\pi\int_{-A/2}^{A/2}y\,\sqrt{1+\left(\frac{dy}{dx}\right)^2}\,dx,$$
where \(y\) denotes the Narushin-Romanov-Griffin equation (i.e., NRGE
), and
\(A\) denotes the egg's length, which is the first element in the parameter vector, P
.
Narushin, V.G., Romanov, M.N., Griffin, D.K. (2021) Egg and math: introducing a universal formula for egg shape. Annals of the New York Academy of Sciences 1505, 169\(-\)177. tools:::Rd_expr_doi("10.1111/nyas.14680")
Narushin, V.G., Romanov, M.N., Mishra, B., Griffin, D.K. (2022) Mathematical progression of avian egg shape with associated area and volume determinations. Annals of the New York Academy of Sciences 1513, 65\(-\)78. tools:::Rd_expr_doi("10.1111/nyas.14771")
Shi, P., Chen, L., Quinn, B.K., Yu, K., Miao, Q., Guo, X., Lian, M., Gielis, J., Niklas, K.J. (2023) A simple way to calculate the volume and surface area of avian eggs. Annals of the New York Academy of Sciences 1524, 118\(-\)131. tools:::Rd_expr_doi("10.1111/nyas.15000")
curveNRGE
, DNRGE
, fitNRGE
, NRGE
, VolumeNRGE
Par6 <- c(4.51, 3.18, 0.1227, 2.2284)
SurfaceAreaNRGE(P = Par6)
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