Background
Coronavirus disease 2019 (COVID-19) is a contagious disease that is caused by severe acute respiratory coronavirus 2 (SARS-CoV-2). With the rapid spread of this pandemic, vaccination has been a breakthrough solution. At the time of conducting the study, COVID-19 vaccines were only approved for adults 18 years and older. Therefore, the aim of the study was to assess the parents’ likelihood of vaccinating their children once the recommendation for pediatric vaccination is established.
Methods
This was a cross-sectional study in which a self-administered survey was distributed to all parents visiting National Guard primary healthcare centers in Riyadh, Saudi Arabia. The questionnaires were distributed to parents attending primary care clinics. Data collected in the questionnaire include demographics (gender, marital status, educational level, and age), questions assessing parental perception towards the COVID-19 vaccine, and willingness to offer the vaccine to their children.
Results
A total of 333 respondents completed the survey with a response rate of 83.3%. Half of the participants were males and the other half were females with the majority (45.6%) aged between 31 and 40 years old. In terms of parental acceptability of vaccinating their children against COVID-19, 53.7% of the parents were willing to vaccinate their children as opposed to 27% who were reluctant to do so. Of those who refused, 97.5% and 96.6% cited lack of information and evidence, respectively, as the most common reasons for not accepting COVID-19 vaccine. We have found that age of the parents, especially those 31-40 years old, age of their children, especially 4-12 years old, and previous acceptance of the seasonal influenza vaccine were significantly associated with higher parental acceptability of COVID-19 vaccine. In contrast, gender, marital status and educational level were not statistically significant factors.
Conclusion
As COVID-19 spread globally and made people's lives in danger, vaccination became a highly important measure to halt the spread of the disease. Parents are now given the choice of protecting their beloved children from COVID-19 infection and its possible complications. Based on our findings, we noticed that majority of parents are going to vaccinate their children. In addition, some certain age groups of parents and children were significantly associated with decreased vaccine hesitancy to take the COVID-19 vaccine.
In this study, the effects of variable characteristics are analyzed on a three-dimensional (3D) dusty Casson nanofluid flow past a deformable bidirectional surface amalgamated with chemical reaction and Arrhenius activation energy. The surface is deformable in the direction of the x-axis and y-axis. The motion of the flow is induced due to the deformation of the surface. The impression of Soret and Dufour's effects boost the transmission of heat and mass. The flow is analyzed numerically with the combined impacts of thermal radiation, momentum slip, and convective heat condition. A numerical solution for the system of the differential equations is attained by employing the bvp4c function in MATLAB. The dimensionless parameters are graphically illustrated and discussed for the involved profiles. It is perceived that on escalating the Casson fluid and porosity parameters, the velocity field declines for fluid-particle suspension. Also, for augmented activation energy and Soret number, the concentration field enhances. An opposite behavior is noticed in the thermal field for fluctuation in fluid-particle interaction parameters for fluid and dust phase. Drag force coefficient increases on escalating porosity parameter and Hartmann number. On amplifying the radiation parameter heat and mass flux augments. A comparative analysis of the present investigation with an already published work is also added to substantiate the envisioned problem.
The non-isothermal couple stress fluid inside a reverse roll coating geometry is considered. The slip condition is considered at the surfaces of the rolls. To develop the flow equations, the mathematical modelling is performed using conservation of momentum, mass, and energy. The LAT (lubrication approximation theory) is employed to simplify the equations. The closed form solution for velocity, temperature, and pressure gradient is obtained. While the pressure and flow rate are obtained numerically. The impact of involved parameters on important physical quantities such as temperature, pressure, and pressure gradient are elaborated through graphs and in tabular form. The pressure and pressure gradient decreases for variation of the couple stress parameter and velocity ratio parameter K. While the variation of the slip parameter increases the pressure and pressure gradient inside the flow geometry. Additionally, flow rate decreases for the variation of the slip parameter as fluid starts moving rapidly along the roller surface. The most important physical quantity which is responsible for maintaining the quality of the coating and thickness is flow rate. For variation of both the couple stress parameter and the slip parameter, the flow rate decreases compared to the Newtonian case, consequently the coating thickness decreases for the variation of the discussed parameter.
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