Öz: Bu çalışmada, sığır ELISA-PAG (gebelik ilişkili glikoprotein) kitinin Konya Merinosu koyunlarda; 1) gebeliğin teşhisi ve 2) PAG'lerin erken gebelik plazma profilinin belirlenmesindeki kullanılabilirliği değerlendirildi. Bu amaçlar için, kan örnekleri gebeliğin 21-70. günleri arasında haftalık olarak alındı. Kit üreticisinin talimatına göre, PAG'lerin plazma seviyeleri belirlendi ve değer 0.3 OD'nin (optimal yoğunluk) üzerinde ise gebelik tanısı pozitif olarak kabul edildi. Gebeliğin 21 ve 70. günleri arasında PAG'lerin profilinde lineer benzeri bir artış olduğu belirlendi. PAG'lerin pozitif değer oranları 28, 35 ve 42. günlerde sırasıyla %30.8, %69.2 ve %66.7 olarak belirlendi. Bu sonuçlara göre, ticari sığır ELISA-PAG kitinin Konya Merinosu koyunlarda erken gebeliğin tespitinde ve fetoplasental yapının sağlığının izlenmesinde güvenilir olduğu belirlendi. Ancak, plazma örneklerinde gebelik tanısı için pozitif değer 0.3 OD kabul edilirse erken gebelikte yüksek bir hata payı ortaya çıkmaktadır.
SUMMARYIn this paper, the homotopy perturbation method (HPM) is developed to obtain approximate analytical solutions of a fractional Boussinesq equation with initial condition. The fractional derivatives are described in the Caputo sense. Some examples are given and comparisons are made, the comparisons show that the HPM is very effective and convenient and overcomes the difficulty of traditional methods. The numerical results show that the approaches are easy to implement and accurate when applied to spaceand time-fractional equations.
In this study, we use the homotopy perturbation method (HPM) to solve an initial-boundary value problem with a non-classic condition for the one-dimensional wave equation.We will deal with a new type of non-local boundary value problems which are the solution of hyperbolic partial differential equations with a non-standard boundary specification. The method is very reliable and effective and provides the solution in terms of rapid convergent series. Several examples are tested to support our study.
The pulsed high-voltage discharge (PHVD) process has been a novel alternative method to advanced oxidation processes (AOPs) 1,2 . The PHVD process involves the formation of a nonthermal plasma in an aqueous solution, which can promote both physical and chemical processes. Physical processes include ultraviolet light emission, shock waves, electrohydraulic cavitation, pyrolysis within plasma channels and supercritical water conditions. Chemical processes simultaneously occur in water, i.e. free radical reactions including the formation of short-live reactive radicals, such as hydroxyl radicals, hydrogen radicals, superoxide radicals, perhydroxyl radicals, and the simultaneous production of long-lived molecular species, such as hydrogen peroxide and ozone in aqueous phase 1-3 . These effects are responsible for oxidizing the organic matter in the wastewater.As one of the advanced oxidation processes, pulsed highvoltage discharge technology has been used in wastewater treatment for the effective elimination of organic compounds, especially with high toxicity and low biodegradability such as degradation of phenol 3-5 , chlorophenols 6-9 and organic dye [10][11][12][13][14] .A few researchers combined pulsed high-voltage discharge technology with other techniques to achieve better treatment efficiency, such as ferrous ion 5,10,13,15,16 , hydrogen peroxide 4,15 ,
C 12 H 22 CdN4O14, triclinic, P¯ (no. 2), a = 7.188(2) Å, b = 8.895(3) Å, c = 9.771(3) Å, α = 63.148(3)°, β = 76.750(3)°, γ = 66.225(3)°, V = 509.2(3) Å 3 , Z = 1, Rgt(F) = 0.0253, wR ref (F 2 ) = 0.0676, T = 296(2) K.
CCDC no.: 1484775The crystal structure is shown in the gure. Tables 1 and 2 contain details of the measurement method and a list of the atoms including atomic coordinates and displacement parameters.
Source of materialThe title compound was synthesized by a hydrothermal method under autogenous pressure. A mixture of CdCl 2 ·H 2 O
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