Infant Toy Analysis

Visit a toy store
Select toys that say 6 months +
You are analyzing two toys. They should be all of different types. (For e.g. a soft toy, character toy, problem solving toy, talking toy, interactive toy, plastic toy, cloth toy etc.)
Do not choose toys with screens.
Do this for both toys
Take a picture of the toy
Handle it if possible.
If it has keys that are accessible, press them and see how it feels
Examine the toy and see if you see any safety concerns. Think about if that the toy is safe/ unsafe for the infants between 6 to 12 months, why / why not?
Is it good for the age that the manufacturer says or is it more suitable for the older child?
Once you have explored you toys then write a report for both of them separately discussing each toy using the questions given below.
link: https://youtu.be/b2fvNzWg_-s

Sample Solution

as per the crude materials, physicochemical attributes (size, charge, number of lamellae, penetrability), arrangement strategies, in vivo conduct. In an arrangement as per the materials utilized in their planning, NPDDS can be of lipidic nature as liposomes, micelles, Transfersomes, and strong lipid nanoparticles, or of polymeric nature as nanoparticles, micelles, and niosomes [65-67].

Different materials can be utilized to get ready nanoparticles, for example, proteins, polysaccharides and manufactured polymers. The decision of lattice materials is reliant on various variables, including : (a) size of nanoparticles required; (b) regular properties of the medication, e.g., watery solvency and solidness; (c) surface qualities, for example, charge and porousness; (d) level of biodegradability, biocompatibility and poisonous quality; (e) Drug discharge profile needed; and (f) Antigenicity of the last item.

As of late, polymer–nanoparticle composite materials have pulled in the consideration of various analysts, because of their synergistic and half and half properties got from a few parts. Regardless of whether in arrangement or in mass, these materials offer one of a kind properties (mechanical, electrical, optical and warm) [69].

The field of polymer nanoparticles (PNP) is quickly developing and assuming a urgent job in a wide range of territories going from gadgets to the Photonics, leading materials to sensors, drug to biotechnology, contamination control of ecological innovation, etc, during the most recent decades [70, 71] . New and more up to date polymers have been attempting to create nanoparticles for their application as medication transporters. Craparo et al., 2008 portrayed the arrangement and physicochemical and in vitro natural portrayal of nanoparticles dependent on PEGylated, acryloylated polyaspartamide polymers.

Polymeric nanoparticles can be characterized as colloidal particles running somewhere in the range of 10 and 1000 nm in size and made out of either common or fake polymers [73]. Polymeric nanopartic

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