How new openings in structural walls would be supported

Conduct research into Victorian housing. Search for photographs and plans of Victorian houses. Select one house from your research (please put the link and images of the house and floor plan) to use as a case study for the following report:

Provide a report that explains how a developer would completely refurbish and extend a Victorian house to increase the size of the kitchen at ground floor level and provide at least one additional bedroom at an upper floor level.

Specific requirements:
1. Explain how new openings in structural walls would be supported and comply with Building Regulation Part A.
2. Explain how the existing building fabric can be brought up to current Building Regulation Part L standards (external walls, floors, windows and the roof).
3. Specify the form of constructionism of the extension and explain how it is connected to the existing building fabric.
4. Explain how the extension complies with Building Regulation Part L.
5. Include photographs and your own plans and drawings of construction details to illustrate the points that you make. Select a suitable scale for all plans and drawings.
6. Present and structure your report to a professional standard with correct spelling, punctuation and grammar.
7. Present your report in your own words and provide correctly cited short quotations and/or paraphrases as objective evidence in support of the points that you make. Acknowledge all sources including images, photographs and drawings etc.

Sample Solution

There is considerable interest in recent years in developing biodegradable nanoparticles as a drug/gene delivery system [25, 38-41]. An ideal drug-delivery system possesses two elements: the ability to target and to control the drug release. Targeting will ensure high efficiency of the drug and minimize the side effects, especially when dealing with drugs that are supposed to kill cancer cells but can also kill healthy cells when delivered to them. Controlled drug release can decrease or even prevent its side effects.
The advantages of using nanoparticles for drug delivery applications rise from their three main basic properties. First, nanoparticles, because of their small size, can penetrate through smaller capillaries, which could allow efficient drug accumulation at the target sites [42, 43]. Second, the use of biodegradable materials for nanoparticle preparation can allow sustained drug release within the target site over a period of days or even weeks [44-46]. Third, the nanoparticle surface can be adapted to modify biodistribution of drugs or can be conjugated to a ligand to attain target-specific drug delivery [47, 48].

The advantages of using nanoparticles as drug delivery system include: (1) stable dosage forms of drugs which are either unstable [49, 50] or have unacceptably low bioavailability in non-nanoparticulate dosage forms[51, 52] ; (2) they control and sustain release of

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