11 resultados para rooms

em Brock University, Canada


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Receipt from the Genesee, Buffalo, New York for rooms rented, Sept. 24, 1887.

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Work nearing completion in one of the Glenridge Campus rooms.

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The Decew Residence was the first on-campus residence constructed and replaced the temporary student residences on Glenridge Avenue at the base of the escarpment. The Decew residence accommodated 400 students, and included a 300 seat dining hall, 10 activity rooms and 5 student lounges. Construction completed in 1970.

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The five-storey building consists of 255 furnished, single-rooms with a bathroom shared between every two rooms, as well as a lounge on each floor. It is named after the University's second and longest-serving President. Dr. Earp was President from 1974-1988, in addition to being Acting President during the 1971-72 and 1973-1974 academic years.

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The building accommodated 311 students in single and double rooms, and included a 300-seat dining hall, common lounges, and study rooms. The building is named after Arnie Lowenberger, a former faculty member who held many significant positions during Brock's early development. Lowenberger was the first Director of the School of Physical Athletics and Recreation, and became its first Dean when it was reconstituted into the Faculty of Physical Education. In these positions, he introduced varsity sports to Brock such as men's and women's basketball and men's hockey, implemented the first health and counseling services for students, planned the design of the original Physical Education building, and drafted the University's Physical Education degree program. He also was the first Director of Residences and the first Dean of Students.

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Harrison Hall holds the new Student Health Centre and Athletic Therapy Clinic. The centre provides the University's Health Services Department with a greater amount of space for students and staff, and the building is designed to make treatment more comfortable and efficient. The centre includes four examination rooms as part of the increased space. It is named after Bernard Harrison, a former Brock physics demonstrator who has donated over $1 million to the University.

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Layout planning is a process of sizing and placing rooms (e.g. in a house) while a t t empt ing to optimize various criteria. Often the r e are conflicting c r i t e r i a such as construction cost, minimizing the distance between r e l a t ed activities, and meeting the area requirements for these activities. The process of layout planning ha s mostly been done by hand, wi th a handful of a t t empt s to automa t e the process. Thi s thesis explores some of these pa s t a t t empt s and describes several new techniques for automa t ing the layout planning process using evolutionary computation. These techniques a r e inspired by the existing methods, while adding some of the i r own innovations. Additional experimenLs are done to t e s t the possibility of allowing polygonal exteriors wi th rectilinear interior walls. Several multi-objective approaches are used to evaluate and compare fitness. The evolutionary r epr e s ent a t ion and requirements specification used provide great flexibility in problem scope and depth and is worthy of considering in future layout and design a t t empt s . The system outlined in thi s thesis is capable of evolving a variety of floor plans conforming to functional and geometric specifications. Many of the resulting plans look reasonable even when compared to a professional floor plan. Additionally polygonal and multi-floor buildings were also generated.

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Basic relationships between certain regions of space are formulated in natural language in everyday situations. For example, a customer specifies the outline of his future home to the architect by indicating which rooms should be close to each other. Qualitative spatial reasoning as an area of artificial intelligence tries to develop a theory of space based on similar notions. In formal ontology and in ontological computer science, mereotopology is a first-order theory, embodying mereological and topological concepts, of the relations among wholes, parts, parts of parts, and the boundaries between parts. We shall introduce abstract relation algebras and present their structural properties as well as their connection to algebras of binary relations. This will be followed by details of the expressiveness of algebras of relations for region based models. Mereotopology has been the main basis for most region based theories of space. Since its earliest inception many theories have been proposed for mereotopology in artificial intelligence among which Region Connection Calculus is most prominent. The expressiveness of the region connection calculus in relational logic is far greater than its original eight base relations might suggest. In the thesis we formulate ways to automatically generate representable relation algebras using spatial data based on region connection calculus. The generation of new algebras is a two pronged approach involving splitting of existing relations to form new algebras and refinement of such newly generated algebras. We present an implementation of a system for automating aforementioned steps and provide an effective and convenient interface to define new spatial relations and generate representable relational algebras.

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Qualitative spatial reasoning (QSR) is an important field of AI that deals with qualitative aspects of spatial entities. Regions and their relationships are described in qualitative terms instead of numerical values. This approach models human based reasoning about such entities closer than other approaches. Any relationships between regions that we encounter in our daily life situations are normally formulated in natural language. For example, one can outline one's room plan to an expert by indicating which rooms should be connected to each other. Mereotopology as an area of QSR combines mereology, topology and algebraic methods. As mereotopology plays an important role in region based theories of space, our focus is on one of the most widely referenced formalisms for QSR, the region connection calculus (RCC). RCC is a first order theory based on a primitive connectedness relation, which is a binary symmetric relation satisfying some additional properties. By using this relation we can define a set of basic binary relations which have the property of being jointly exhaustive and pairwise disjoint (JEPD), which means that between any two spatial entities exactly one of the basic relations hold. Basic reasoning can now be done by using the composition operation on relations whose results are stored in a composition table. Relation algebras (RAs) have become a main entity for spatial reasoning in the area of QSR. These algebras are based on equational reasoning which can be used to derive further relations between regions in a certain situation. Any of those algebras describe the relation between regions up to a certain degree of detail. In this thesis we will use the method of splitting atoms in a RA in order to reproduce known algebras such as RCC15 and RCC25 systematically and to generate new algebras, and hence a more detailed description of regions, beyond RCC25.

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The Four Seasons Sheraton is located on 5 acres of land in downtown Toronto, Ontario. It opened in October of 1972 as part of a joint venture with the Four Seasons chain. At that time, it was the second largest hotel in Toronto boasting 1,450 rooms. The hotel was advertised as a “city within a city”. The connection with the Four Seasons chain was severed in 1976 when Isadore Sharp (founder) sold his 49% share in the hotel.

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1. Invitation and program to the Merritton Hose Co. No. 1 Grand Masquerade Ball and Supper. The invitation is for Mrs. J. Wilson. Ladies are by invitation only. Ladies without masks are charged 10 cents. The supper was held at the Union Hall and the dance was held in the Merritton Town Hall. Phalen’s Full Orchestra was providing the music, Feb. 16, 1900. 2. Business card of Long’s Hotel of Niagara. Rooms were $1.50 per day and the proprietor was Wm. Long, n.d. 3. Business card of Niagara Tannery of Niagara, Ontario. Blake and Burk were the proprietors. They were wholesale manufacturers of oak tanned, hose, belting and harness leather, n.d. 4. Business card of James B. Secord of Niagara, Ontario. His office was in the town hall. He was a notary public, conveyancer, clerk of first division court and Commissioner. He also had money to loan, n.d.