The primary advantages of HR portals and shared services centers.

 

In 200 words describe the primary advantages of HR portals and shared services centers. Give examples of how HR professionals might use each to better achieve cost controls and service enhancement. Required Resource : Kavanagh, M. J., Thite, M., & Johnson, R. D. (Eds.). (2015). Basics, applications, and future directions (3rd ed.). Thousand Oaks, CA: SAGE.

Sample Solution

The primary advantages of HR portals and shared services centers

As explained by Kavanagh, due to organizations growing more complex along with the daily transactions, technology became a ever increasingly important role in managing daily employee transactions (Kavanagh, 2015). With that, HR portals and shared services centers have helped within this transition for HR to be able to sustain and perform job functions. The benefits include: (1) HR portals: reduces time entering information manually – instead of the HR team entering each resume and job application, it`s done so through the HR portal. This saves time, resources, and money for the department. Security is also improved – being that there can be privacy protection issues within HR, this gives better protection with personal information. (2) Shared services centers – as shared by Kavanagh, the advantages include: permitting HR administration managers to focus on delivering the timely, high-quality transactions necessary to fulfill corporate requirements, such as mandated governmental reporting.

concentration on particle size was the same either in the case of increasing Poloxamer 407 concentration and / or increasing the phase ratio as shown in the tables (5, 7 and 9) and figures (4, 6 and 8).
These results were found to agree with the results of both Galindo-Rodriguez et al., 2004 [149] who prepared nanoparticles of Eudragit L100-55 using nanoprecipitation method to determine effect of polymer concentration on nanoparticle size using different organic solvents and he found that in all cases, increasing polymer concentration in organic phase resulted in increasing mean size [149],and D. Quintanar-Guerrero et al., 1999 [215] who used emulsion-diffusion method to prepare Eudragit E nanoparticles using Eudragit E/ethyl acetate/PVAL system and cellulose acetate phthalate (CAP) nanoparticles using cellulose acetate phthalate/2-butanone/Poloxamer 407 system and in two systems it was found that there is a switch between micro and nanoparticles depending on polymer concentration in internal organic phase where, as polymer concentration increased, size of produced particles significantly increased [215]. On the other hand, these results are disagreeing with those reported in Ahmed, I.S., et al.,2014 [216] who prepared poly-Ɛ- caprolactone nanoparticles by solvent displacement method and investigated the effect of polymer concentration on particle size. It was found that increasing polymer concentration from (0.5 to 0.8% w/v) at surfactant concentration (0.5% w/v) resulted in increasing particle size while, at the same surfactant concentration and increasing polymer concentration to (1% w/v) particle size decreased. Also, increasing polymer concentration from (0.5 to 0.8% w/v) at surfactant concentration (1% w/v) resulted in decreasing particle size while, at the same surfactant concentration and polymer concentration was increased to (1% w/v) particle size increased. These results were attributed to that at low polymer concentration and high surfactant concentration, the solubility of polymer in acetone/water mixture might have increased due to the solubilizing effect of the surfactant leading to slower rate of polymer precipitation and formation of larger particles. While at higher polymer concentration the effect of surfactant on solubility was less marked leading to higher precipitation rate and the formation of smaller particles [216].
The higher polymer concentration might also results in increasing viscosity of the organic phase, which might decrease the diffusion rate and might lower the rate of Ostwald ripening for the more viscous solutions so smaller particles were produced [217].
Eudragit S100 nanoparticles were smaller than those of HPMC ph

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