16 research outputs found

    Rythm of the eyes: enhancing visual communication through eye-tracking technology

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    Visual is the main form of communication used by designers to convey unique and creative messages to the viewers. Whether the communication processes took place in basic forms such as in 2D sketches, paintings or through rendered 3D animated models, the ultimatum of using visual communication is to enhance the viewers experience with the tangible creative products and subsequently improve the quality of their decision-making. The platforms for visual communication within the creative environment also include advanced visualization technologies such as virtual reality and augmented reality, which provide real-time and real-world experience to the viewers. Nevertheless questions were raised whether the designers were fully aware of the viewers perception towards the visual information embedded in their creative products. Without these understanding, the products and their valuable information would be less meaningful to the viewers

    Measuring Visual Pollution Threshold along Kuala Lumpur Historic Shopping District Streets Using Cumulative Area Analysis

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    Visual pollution significantly affects public appreciation of the urban environment. Sources of visual pollution such as wastes, energy infrastructures, and advertising boards can cause discomfort towards one\u27s ability to enjoy a scene or view. Although visual pollution is prevalent in the urban environment, less is known regarding public acceptance and tolerance towards different levels of pollution. Therefore, from our point of view, determining the threshold level of visual pollution is essential in achieving visual quality in the urban environment. In this research, we have chosen a popular urban street in Kuala Lumpur as a case study to help us understand how people respond towards visual pollution within a historic shopping district. The study employed cumulative area analysis and photo booklet survey, and it was tested with students in the landscape architecture program at Universiti Putra Malaysia. Results show that the respondents have higher tolerance towards the level of visual pollution than what we had anticipated. Although we have thought that landscape architecture students should be more sensitive towards visual pollution, regular exposure towards pollutants in the urban environment probably has increased their level of tolerance. Nevertheless, this study has provided us with insight on demographic variables such as gender, education level and residential location, which may be meaningful for future research in identifying visual pollution threshold among the public in cities

    Optimisation of silicone-based dielectric elastomer transducers by means of block copolymers – synthesis and compounding

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    Emerging artificial muscle technology has developed from metal-based robotics to softtype robotics made from soft matter. Research into artificial muscle technology based on soft matter has been conducted mainly in order to mimic soft and robust human muscle. In this regard, dielectric elastomers have been studied. Their actuation occurs when Maxwell stress exceeds elastic stress in the presence of an electrical field, resulting in contraction in thickness and planar expansion in the area. As well as an actuator, dielectric elastomers can be used as generators and sensors. As a dielectric elastomer, silicones have been used extensively in many applications, due to favourable properties such as thermal stability, non-conductivity, high gas permeability and low toxicity. However, silicones have a low dielectric constant and thereby low energy density. In order to enhance actuation performance, it is the aim of this research to develop silicone elastomers with a high dielectric constant and high electrical breakdown strength, as well as a low Young’s modulus. In this Ph.D. thesis, two methods were developed to enhance silicone properties such as the dielectric constant and electrical breakdown strength. The first method was devised to enhance the dielectric constant of silicone elastomers through the use of a polydimethylsiloxane-polyethyleneglycol (PDMS-PEG) copolymer, in order to obtain an elastomer with high electrical energy. PDMS-PEG copolymers were synthesised and blended in commercial silicone and subsequently cross-linked. The relative permittivity of cross-linked silicone with 5 wt% of PDMS-PEG copolymers increased by nearly 50%, without compromising dielectric loss and mechanical properties, compared to the commercial silicone elastomer. The second investigated method involved enhancing the electrical breakdown strength of silicone by using an aromatic voltage stabiliser. Here, polyphenylmethylsiloxane (PPMS), which contained aromatic voltage stabilisers, was bonded covalently to PDMS through a hydrosilylation reaction obtaining PDMS-PPMS copolymers. The synthesised copolymers were subsequently cross-linked with a vinyl cross-linker. The obtained cross-linked PDMS-PPMS copolymers were inherently soft and robust with increased electrical breakdown strength (21%) compared to the reference elastomer without an aromatic voltage stabiliser. The conducting polymer was developed through the use of a multi-walled carbon nanotube (MWCNT) in a PDMS-PEG matrix as a compliant electrode of dielectric elastomers. The conductive PDMS-PEG copolymer was incorporated with surface-treated MWCNT, in order to obtain highly conductive elastomer. The prepared sample with 4 parts per hundred rubber (phr) MWCNT was soft and the resulting conductivity of the cross-linked PDMS-PEG copolymer with the addition of MWCNT was high, at 10-2 S cm-1, nearly equivalent to a commonly used commercial conducting polymer. In this thesis, the elastomer and electrode system is referred to as a ‘dielectrielastome

    Research Article Countering Recommendation from CICR on Social Impact of FDI in Liberia: Strategies for Sime Darby to Overcome the Problems

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    Abstract: Liberia has initiated a paradigm shift to develop its agriculture sector through Foreign Direct Investment (FDI). An investment from Sime Darby Plantations has created social impact towards the local, culture and land use. Center for International Conflict Resolution or CICR has seen these problems as a threat to social development in Liberia. Eleven recommendations have been delivered to Sime Darby as a solution to cater all problems that should conserve the local, culture and the land use. In order to assist Sime Darby, this study aims to highlight a strategy for Sime Darby to counter all recommendations from CICR. This study was conducted over a period of three months with several documents and files being investigated. Documents from CICR and Sime Darby have been analyzed thoroughly in order to propose a promising resolution. Three factors have been seen as solutions to Sime Darby to overcome the problems whilst it will assist them on their investment in Liberia. Sime Darby has to execute all strategies that will promise a long run investment in Liberia whilst building their own image as a people-friendly company

    Effects of modern instructional technology (MIT) on critical thinking skills of students in agriculture vocational courses in Nigeria

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    The recent development in modern instruction technology (MIT) methods and equipment warranted for studies to examine their effects on students, teachers, and the education system in general. This study examines the effects of MIT on students’ critical thinking skills in Agriculture vocational courses in Nigeria. The methods and equipment used were identified, and the effect of teachers’ usage behaviour was assessed. A survey approach was adopted, using questionnaires for data collection. The descriptive, correlations and multiple regressions were carried out using SPSS. The result of this study indicates that the most commonly used equipment is electronic whiteboard, while the least are electronic tablets and laptops. Cooperative learning is the most commonly used methods while games and online instruction are the least. There is a moderate positive correlation between MIT methods and the students’ critical thinking skill, but a very weak positive correlation between MIT equipment and students’ critical thinking skill. There is statistically significant contribution of methods to student’s critical thinking, but insignificant method usage behaviour. Therefore, it is concluded that government should incorporate the provision and effective utilisation of MIT equipment and methods in the national education policy. School managements should emphasise the use of MIT methods and review curriculum to improve teachers’ skills in MIT usage. Teachers should utilise the available MIT equipment and method along with their skills for an effective delivery of lessons. Similarly, the students should be encouraged to appreciate the available methods and the equipment, and use them effectively

    Techno-economic analysis of innovative production and application of solar thermal chilled water for agricultural soil cooling

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    Tropical climate countries are net importers of temperate crops due to difficulties encountered in cultivating them, thus constant increase in prices of these crops is always experienced due to increasing demand. To meet the demands, efforts have been made to adapt temperate crops to tropical climate but the crops quality is always low even though at high production cost. Cool greenhouse or upland farming has been deployed in some cases but these are respectively energy consuming and detrimental to mountain ecosystems. Soil cooling is considered to be appropriate in this case to create winter-like soil temperature and to reduce soil water evaporation. Sustainable chilled water production from solar thermal combined power and cooling is presented in this paper to use the (virtually) free solar energy in the tropics to run a combined plant of organic Rankine power and vapour absorption refrigeration cycle thereby generating electrical power together with chilled water production. The study involves the analysis of a sample size soil in Malaysia to determine its cooling load and the plant capacity to overcome the load. The technical analysis is based on the performance of the combined plan over a range of working fluid superheating temperature and the effective solar collector size to supply the needed heat at the range of the temperatures. The economic analysis is carried out (using RETScreen software) by comparing all the associated costs of the present case (using solar energy) with a based case (using power from the national grid) over a 20-year plant life. Analysis shows that 3.5 kW plant size of the present case has a simple payback time of 14.2 years, while 7.0 kW plant size gives simple payback time of 10.8 years. The sensitivity shows that change in investment cost has more influence on viability of the system than electricity cos

    Instrument development to measure the non-profit organisation website user satisfaction and user willingness to donate

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    A website is a popular option that has been used by non-for profit organisation (NPO) as a medium of communication. Thus, it made a website as an important medium for the NPO to communicate. The aim of this paper is an instrument validation which adopted from the Technology Acceptance Model (TAM). The instrument validation included the website ease of use, usefulness, trust, the satisfaction of using the NPO website and the user willingness to donate. The sample size of the study was 269 website users from ten NPO website. The analysis yielded that several items were deleted to meet the CFA model fit requirement. Thus, only trusts, website ease of use, user satisfaction of using NPO website and user willingness to donate remain after the Confirmatory Factor Analysis (CFA) model fit analysis. Hence, the amended CFA model was ready to be used for the second level (measurement model) validation and reliability analysis in the Structural Equation Model (SEM)

    Novel cross-linked enzyme aggregates of levanase from bacillus lehensis g1 for short-chain fructooligosaccharides synthesis: developmental, physicochemical, kinetic and thermodynamic properties

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    Short-chain fructooligosaccharides (scFOSs) can be produced from the levan hydrolysis using levanase. Levanase from Bacillus lehensis G1 (rlevblg1) is an enzyme that specifically converts levan to scFOSs. However, the use of free levanase presents a lack of stability and reusability, thus hindering the synthesis of scFOSs for continuous reactions. Here, CLEAs for rlevblg1 were prepared and characterized. Cross-linked levanase aggregates using glutaraldehyde (CLLAs-ga) and bovine albumin serum (CLLAs-ga-bsa) showed the best activity recovery of 92.8% and 121.2%, respectively. The optimum temperature of CLLAs-ga and CLLAs-ga-bsa was increased to 35 °C and 40 °C, respectively, from its free rlevblg1 (30 °C). At high temperature (50 °C), the half-life of CLLAs-ga-bsa was higher than that of free rlevblg1 and CLLAs-ga. Both CLLAs exhibited higher stability at pH 9 and pH 10. Hyperactivation of CLLAs-ga-bsa was achieved with an effectiveness factor of more than 1 and with improved catalytic efficiency. After 3 h reaction, CLLAs-ga-bsa produced the highest total scFOSs yield of 35.4% and total sugar of 60.4% per gram levan. Finally, the reusability of CLLAs for 8 cycles with more than 50% activity retained makes them as a potential synthetic catalyst to be explored for scFOSs synthesis

    Formation of a Nanorod-Assembled TiO<sub>2</sub> Actinomorphic-Flower-like Microsphere Film via Ta Doping Using a Facile Solution Immersion Method for Humidity Sensing

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    This study fabricated tantalum (Ta)-doped titanium dioxide with a unique nanorod-assembled actinomorphic-flower-like microsphere structured film. The Ta-doped TiO2 actinomorphic-flower-like microsphere (TAFM) was fabricated via the solution immersion method in a Schott bottle with a home-made improvised clamp. The samples were characterised using FESEM, HRTEM, XRD, Raman, XPS, and Hall effect measurements for their structural and electrical properties. Compared to the undoped sample, the rutile-phased TAFM sample had finer nanorods with an average 42 nm diameter assembled to form microsphere-like structures. It also had higher oxygen vacancy sites, electron concentration, and mobility. In addition, a reversed double-beam photoacoustic spectroscopy measurement was performed for TAFM, revealing that the sample had a high electron trap density of up to 2.5 μmolg−1. The TAFM showed promising results when employed as the resistive-type sensing film for a humidity sensor, with the highest sensor response of 53,909% obtained at 3 at.% Ta doping. Adding rGO to 3 at.% TAFM further improved the sensor response to 232,152%
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