Highly composite number

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    CASE 9-1: LOW NAIL COMPANY Question 1: Using the EOQ methods outlined in chapter 9, how many kegs of nails should Low order at one time? The EOQ formula is: EOQ = √ 2 (annual use in units) (cost of placing an order) / annual carrying cost per item per year = √ 2 (2000) (60) / 2 = √ 120,000 = 345 kegs per order Note the 2 in the denominator. That is because, on average, the rented warehouse space is only half full, which, makes the average warehousing cost per keg be $2. Question 2: Assume

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    However, with subtraction calculations, this is not possible. Hence they are expected to ‘use inverse relationship between addition and subtraction to check calculations and solve missing number problems.’ (NC, 2013). One of the approaches, which is highly recommended for children to practise, is to do addition calculations mentally (working out calculations in their head) using various strategies, which is the focus of this essay. Tony Cotton (2013, p.109) states that

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    previously defined, a composite material consists of two or more materials where polymers are used as matrix materials usually. These materials behave together to produce the best properties of the scaffold, duplicating the same composite features of bone. In particular, polymer- based composite scaffolds may mimic the structure of natural bone which is mainly made of HA and collagen. Showing better osteoconductivity, HA can be considered the inorganic reinforcing phase of the composite scaffold, while

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    spindle speed, feed rate and depth of cut for edge trimming of CFRP composites on machined surface quality used by diamond abrasive cutters. Here the cutting forces, surface roughness, specific cutting energy and work specimen temperature were evaluated and analyzed. Lastly, all of these factors are also influenced on machining responses [22]. Qin et al. focused on full factorial experimental design for milling of CFRP composites and all helical milling experiments were carried out with a customized

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    The stress–strain curves of the pure SR and SR composites are presented in Figure 3(a), indicating that the stresses at 100% strain and 300% strain increase with increasing content of BT particles. The main reason for the increased stress at definite elongation is the reinforcing effect of the inorganic particles [38]. In addition, the elongation at break of the SR composites decreased after adding BT particles, attributed to the BT particles acting as physical links, thus limiting the flexibility

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    using either static lift or by using the dynamic lift of an airfoil. A composite material is a material made from two or more constituent materials with differing physical or chemical properties that when joined together, produce a material with characteristics different from the individual material. The individual component remains separate and unique from the finished structure. There are a few types of currently available composite materials, and they include carbon fibre, fiber glass and fibre-reinforced

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    conductivity is a combination of frequency dependent AC conductivity and DC conductivity. At higher level of doping, an increase in the network density through the polymer chain results in elimination of number of isolated sites which give rise to AC conductivity. So at the limit of very high doping the number of isolated sites is less and the DC conductivity dominates the total conductivity.

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    conducting experimental, numerical and analytical research in interdisciplinary branches of material sciences. To date, I have obtain major background in the fields of composite design, bioengineering, and multi-scale simulation, and accomplished multiple project in

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    moulding technique, cutting process parameters, End milling tools, GFRP composite laminates, SEM. Introduction FRP composites having superior material properties when compared with metals, improved corrosion resistance, fatigue resistance, less weight to strength ratio and high fracture toughness. Hence GFRP composites frequently used in several applications like sports goods, racing car bodies and aerospace components [1]. Often composite products manufactured by near-net shapes. The components made by

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    at least one and often two stories deep to realize adequate stiffness. Thus, they are generally positioned at plant levels to reduce the obstruction they create. Depending upon the number of levels of outriggers and their stiffness, the perimeter columns of an outrigger structure perform a composite behavior with the core. When compared to single-storey outrigger structures, multi-storey outriggers have better lateral resistance, and thus efficiency in the structural behavior

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