The Experts below are selected from a list of 1146 Experts worldwide ranked by ideXlab platform
Luthfiatul Cn Aini - One of the best experts on this subject based on the ideXlab platform.
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Pengembangan Media Pembelajaran Fisika Menggunakan Aplikasi Elearning XHTML Editor (Exe) Pada Pokok Bahasan Pemuaian Untuk SMK Kelas X
2019Co-Authors: Luthfiatul Cn AiniAbstract:Physics is a science that has a significant role in the development and utilization of technology. Physics is considered a difficult subject because it contains a collection of collections. The difficulty of these students can be an indicator of the low ability of students to communicate. One way to make physics lessons more interesting. By using the Elearning XHTML Editor (Exe) Application program is an Application program that is quite easy and simple for the success of the expansion material. This study aims to produce physics learning media and feasibility learning from users of physics learning media using Elearning XHTML Editor (Exe). The development model in this study is ADDIE. Consists of five phases, namely 1) analysis, 2) design, 3) development, 4) implementation, 5) evaluation. Media that have been made are validated for due diligence by 2 media experts, 2 material experts, and implemented to users (students) with a questionnaire assessment. The subject of this research is an attractive, interactive, independent and easy-to-use learning medium for vocational high school students on the subject of Expansion. This study produced physics learning media using the Elearning XHTML Editor (Exe) Application on the subject of expansion for SMK grade X. From the results of media validation, material validation, obtained a feasibility value of 84.46%, 87.50% and included in the excellent category . The response from users (students) scored 84.10% and was included in the excellent category. So that the resulting media is suitable for use in supporting learning
Martin Kýhos - One of the best experts on this subject based on the ideXlab platform.
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Using of close-range photogrammetry in underground spaces joined with modern visualisation method
Czech Technical University in Prague. Computing and Information Centre., 2021Co-Authors: Martin KýhosAbstract:Cílem diplomové práce je za pomoci blízké fotogrammetrie získat prostorová data části podzemního prostoru bývalého uranového dolu v Dolní Rožínce, nyní v podzemním výzkumném pracovišti (PVP) Bukov, a ta vizualizovat v prostředí virtuální reality (VR). Praktická část zahrnuje tvorbu 3D modelu v softwaru Agisoft Metashape Professional a jeho následné převedení do prostředí VR. Data pro tvorbu modelu byla získána za pomoci dvou neměřických fotografických kamer a následně byla zpracována metodou IBMR. Součástí práce byla dále tvorba virtuálního prostředí v softwaru Unreal Engine 4. Výsledkem práce je Exe aplikace obsahující virtuální prostředí, které je možné podrobně procházet za pomoci VR headsetů.The objective of this thesis is to use close range photogrammetry and create a modern visualisation of a part of a former underground mine in Dolní Rožínka, today The Bukov Underground Research Facility (URF). The practical part consists of creating a 3D model of the former underground mine and converting it into a virtual reality (VR) environment. The data used for creating the model was collected using two non-metric photogrammetric cameras and was processed using the IBMR method. Component to the thesis was the creation of a virtual environment using the software Unreal Engine 4 (UE4). For the creation of the URF virtual model, it was necessary to create new materials to achieve the desired visualisation; the materials were generated from the texture of a model created in Agisoft Metashape Professional. The final result of the thesis is an Exe Application, with which it is possible to view and walk through the URF using a VR headset
Berglund Johan - One of the best experts on this subject based on the ideXlab platform.
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Evaluation of new equipment for modal testing
KTH Lättkonstruktioner, 2015Co-Authors: Berglund JohanAbstract:This report evaluates new equipment for model testing, and also the design of an Exe program created using Labview. The existing equipment was a Dytran 3032A accelerometer, a Dytran 5800A2 impulse hammer, two Dytran 4105C ampli˝ers, a Microstar Laboratories MSXB 042 quick-connect card, and one Microstar Laboratories iDSC 1816 data acquisition card, connected to a computer using the operating system Windows 2000 where the program Matlab 6.1 was used for data collection and Fourier transformation.A feasibility study was carried out with a National Instruments 9201 cDAQ data acquisition module mounted into a National Instruments 9174 cDAQ chassis using the existing impulse hammer and accelerometer, where a simple prgram in Labview 2014 was made.Given the price and compatibility with the existing impulse hammer, accelerometer and other systems within the laboratory, a National Instruments 9234 cDAQ data acquisition module installed in a National Instruments 9171 cDAQ chassis was selected, combined with a PC using the operating system Windows 7 and running an Exe Application created in Labview 2014 and 2011 for data collection and Fourier transforming. The older equipment was left intact as far as possible as a reserve.Denna rapport går igenom utvärderingen av ny utrustning för modalprovning samt design av ett Exe-program skapat i Labview. Den be˝ntliga utrustningen var en Dytran 3032A accelerometer, en Dytran 5800A2 impulshammare, två Dytran 4105C förstärkare, en Microstar Laboratories MSXB 042 snabbanslutningskort, och en Microstar Laboratories iDSC 1816 datainsamlingskort, sammankopplat till en dator med operativsystemet Windows 2000, där programmet Matlab 6.1 användes för datainsamling och Fouriertransformering.En förstudie genomfördes med en National Instruments 9201 cDAQ datainsamlingsmodul isatt ett National Instruments 9174 cDAQ chassi, tillsammans med den be˝ntliga impulshammaren och accelerometern, där ett simpelt program i Labview 2014 togs fram.Med tanke på priset och kompatibiliteten med impulshammaren, accelerometer och övriga sy-stem inom laboratoriet, valdes en National Instuments 9234 cDAQ datainsamlingsmodul isatt ett National Instruments 9171 cDAQ chassi, tillsammans med en dator som andvänder opera-tivsystemet Windows 7, där ett Exe-program skapat i Labview 2014 och 2011 användes för datainsamling och Fouriertransformering. Den äldre utrustningen lämnades i största möjliga mån orörd som reserv