The Experts below are selected from a list of 219 Experts worldwide ranked by ideXlab platform
Evelyn Storey - One of the best experts on this subject based on the ideXlab platform.
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From technical expert to business consultant – the changing role of the structural Engineer
Australian Journal of Structural Engineering, 2017Co-Authors: Evelyn StoreyAbstract:AbstractThe pace of global change is accelerating. The fundamentals which have guided our choices and actions over the last four decades no longer apply. The traditional role of the structural Consulting Engineer is changing in ways we could never have imagined even a decade ago. Structural Engineers who built their careers on being technically strong, accurate and thorough, with sound communication skills are finding that their traditional strengths are increasingly less important . Structural Engineering design is no longer a sequential process and design is being developed concurrently along many fronts at once. Tasks that once took many man-months of design team effort are being processed by a computer in a matter of hours. In parallel with technological changes, our clients are changing. They no longer seek purely technical solutions from structural Engineers but are seeking to appoint business consultants who can provide expert advice across a range of multidisciplinary challenges that they face. In...
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from technical expert to business consultant the changing role of the structural Engineer
Australian Journal of Structural Engineering, 2017Co-Authors: Evelyn StoreyAbstract:AbstractThe pace of global change is accelerating. The fundamentals which have guided our choices and actions over the last four decades no longer apply. The traditional role of the structural Consulting Engineer is changing in ways we could never have imagined even a decade ago. Structural Engineers who built their careers on being technically strong, accurate and thorough, with sound communication skills are finding that their traditional strengths are increasingly less important . Structural Engineering design is no longer a sequential process and design is being developed concurrently along many fronts at once. Tasks that once took many man-months of design team effort are being processed by a computer in a matter of hours. In parallel with technological changes, our clients are changing. They no longer seek purely technical solutions from structural Engineers but are seeking to appoint business consultants who can provide expert advice across a range of multidisciplinary challenges that they face. In...
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From technical expert to business consultant - the changing role of the structural Engineer
2016Co-Authors: Evelyn StoreyAbstract:The pace of global change is accelerating. The fundamentals which have guided our choices and actions over the last four decades no longer apply. The traditional role of the structural Consulting Engineer is changing in ways we could never have imagined even a decade ago. Structural Engineers who built their careers on being technically strong, accurate and thorough, with sound communication skills are finding that their traditional strengths are increasingly not necessary. Structural Engineering design is no longer a sequential process and design is being developed concurrently along many fronts at once. The traditional team structures of senior and junior Engineers and drafters are being replaced by analytical and geometrical modellers, and tasks that once took many man-months of design team effort are being processed by a computer in a matter of hours. In parallel with technological changes, our clients are changing. They no longer seek purely technical solutions from structural Engineers but are seeking to appoint business consultants who can provide expert advice across a range of multidisciplinary challenges that they face. This is incredibly challenging for the leaders of structural Engineering consultancies. Who should they be looking to employ? What skills do they need? What technology should they be investing in? How to develop and maintain a relationship with a constantly changing client? In this paper the author draws on 30 years of experience as a structural Engineer working for major Engineering consultants to describe a personal view of the skills and attributes that today's young professionals need to adopt to thrive and survive in the built environment industry.
Camacho Salas Alfredo - One of the best experts on this subject based on the ideXlab platform.
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Estudo de cas – risco geológico. concepção e construção do túnel de sumapaz
Universidad Santo Tomás Seccional Tunja, 2018Co-Authors: Camacho Salas AlfredoAbstract:Between years 2006 to 2011, was realized the construction of the tunnel of the Sumapaz, located in the route that leads from Bogota to Girardot, builds singular of the contract of concession of third generation GG-040-2004, celebrated between the National Institute of Routes and the Society Concession freeway Bogotá Girardot S.A. The designs for the structuring of the project the company INGETEC S.A. realized them – BATEMAN INGENIERÍA Ltda. – PIV INGENIERÍA Ltda., establishing the amounts of work to execute, from which 10% of the majors were determined like risk geologic in charge of the concessionaire executed amounts and surpassed this top the recognition by extra charges on the part of the State. The concessionaire in agreement with the contractual power, contracted the nal design of the tunnel with the company PONCE DE LEÓN y Consulting Engineer ASOCIADOS S.A. – PL&A, with which the work was executed. The State through the National Infrastructure Agency, recognized and paid to the concessionaire the approximated sum of fifty-five billions of additional pesos, despite having counted with the designs of INGETEC and a margin of the ten percent (10%) in the established amounts of work like geologic risk in charge of the concessionaire.Entre los años 2006 a 2011, se realizó la construcción del túnel del Sumapaz, localizado en la vía que conduce de Bogotá a Girardot, obra singular del contrato de concesión de tercera generación GG-0402004, celebrado entre el Instituto Nacional de Vías y la Sociedad Concesión Autopista Bogotá Girardot S.A. Los diseños para la estructuración del proyecto los realizó la firma INGETEC S.A. – BATEMAN INGENIERÍA LTDA. – PIV INGENIERÍA LTDA, estableciendo las cantidades de obra a ejecutar, a partir de las cuales se determinó como riesgo geológico a cargo del concesionario el 10% de las mayores cantidades ejecutadas y superado este tope el reconocimiento por sobrecostos por parte del Estado. El concesionario de acuerdo con la potestad contractual, contrató el diseño final del túnel con la firma PONCE DE LEÓN y ASOCIADOS S.A. INGENIEROS CONSULTORES – PL&A, con los que se ejecutó la obra. El Estado a través de la Agencia Nacional de Infraestructura, reconoció y pagó al concesionario la suma aproximada de cincuenta y cinco mil millones de pesos adicionales, no obstante haber contado con los diseños de INGETEC y un margen del diez por ciento (10%) en las cantidades de obra establecidas como riesgo geológico a cargo del concesionario.Entre os anos 2006 à 2011, efetuou-se a construção do túnel do Sumapaz, situado na via que conduz de Bogotá Girardot, obra singular do contrato de concessão de terceira geração GG-040-2004, tida entre o Instituto Nacional Vias e da Sociedade Concessão Autoestrada Bogotá Girardot S.A. As concepções para a estruturação do projeto foi efetuadas pela assinatura INGETEC S.A – BATEMAN ENGENHARIA LTDA. – PIB ENGENHARIA LTDA, estabelecendo as quantidades de obra a executar, partir das quais determinou-se como risco geológico à carga do concessionário 10% mais das grandes quantidades executadas e excedido este limite o reconhecimento por custos adicionais pelo Estado. O concessionário de acordo com o poder contratual, contratou a concepção final do túnel com a assinatura PEDRA-POMES LEON e de ASSOCIADOS S.Aos ENGENHEIROS CONSULTOR – PL&A, com os que foram executados a obra. O Estado por meio da Agência Nacional de Infraestrutura, reconheceu e pagou ao concessionário a soma aproximativa de cinquenta e cinco mil milhões de pesos adicionais, não obstante ter disposto com as concepções INGETEC e de uma margem de dez para - cem (10%) nas quantidades de obra estabelecidas como risco geológico à carga da concessão naire
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Estudio de caso – riesgo geológico. diseño y construcción del túnel de sumapaz
2018Co-Authors: Camacho Salas AlfredoAbstract:Between years 2006 to 2011, was realized the construction of the tunnel of the Sumapaz, located in the route that leads from Bogota to Girardot, builds singular of the contract of concession of third generation GG-040-2004, celebrated between the National Institute of Routes and the Society Concession freeway Bogotá Girardot S.A. The designs for the structuring of the project the company INGETEC S.A. realized them – BATEMAN INGENIERÍA Ltda. – PIV INGENIERÍA Ltda., establishing the amounts of work to execute, from which 10% of the majors were determined like risk geologic in charge of the concessionaire executed amounts and surpassed this top the recognition by extra charges on the part of the State. The concessionaire in agreement with the contractual power, contracted the nal design of the tunnel with the company PONCE DE LEÓN y Consulting Engineer ASOCIADOS S.A. – PL&A, with which the work was executed. The State through the National Infrastructure Agency, recognized and paid to the concessionaire the approximated sum of fifty-five billions of additional pesos, despite having counted with the designs of INGETEC and a margin of the ten percent (10%) in the established amounts of work like geologic risk in charge of the concessionaire.Entre os anos 2006 à 2011, efetuou-se a construção do túnel do Sumapaz, situado na via que conduz de Bogotá Girardot, obra singular do contrato de concessão de terceira geração GG-040-2004, tida entre o Instituto Nacional Vias e da Sociedade Concessão Autoestrada Bogotá Girardot S.A. As concepções para a estruturação do projeto foi efetuadas pela assinatura INGETEC S.A – BATEMAN ENGENHARIA LTDA. – PIB ENGENHARIA LTDA, estabelecendo as quantidades de obra a executar, partir das quais determinou-se como risco geológico à carga do concessionário 10% mais das grandes quantidades executadas e excedido este limite o reconhecimento por custos adicionais pelo Estado. O concessionário de acordo com o poder contratual, contratou a concepção final do túnel com a assinatura PEDRA-POMES LEON e de ASSOCIADOS S.Aos ENGENHEIROS CONSULTOR – PL&A, com os que foram executados a obra. O Estado por meio da Agência Nacional de Infraestrutura, reconheceu e pagou ao concessionário a soma aproximativa de cinquenta e cinco mil milhões de pesos adicionais, não obstante ter disposto com as concepções INGETEC e de uma margem de dez para - cem (10%) nas quantidades de obra estabelecidas como risco geológico à carga da concessão naire.Entre los años 2006 a 2011, se realizó la construcción del túnel del Sumapaz, localizado en la vía que conduce de Bogotá a Girardot, obra singular del contrato de concesión de tercera generación GG-0402004, celebrado entre el Instituto Nacional de Vías y la Sociedad Concesión Autopista Bogotá Girardot S.A. Los diseños para la estructuración del proyecto los realizó la firma INGETEC S.A. – BATEMAN INGENIERÍA LTDA. – PIV INGENIERÍA LTDA, estableciendo las cantidades de obra a ejecutar, a partir de las cuales se determinó como riesgo geológico a cargo del concesionario el 10% de las mayores cantidades ejecutadas y superado este tope el reconocimiento por sobrecostos por parte del Estado. El concesionario de acuerdo con la potestad contractual, contrató el diseño final del túnel con la firma PONCE DE LEÓN y ASOCIADOS S.A. INGENIEROS CONSULTORES – PL&A, con los que se ejecutó la obra. El Estado a través de la Agencia Nacional de Infraestructura, reconoció y pagó al concesionario la suma aproximada de cincuenta y cinco mil millones de pesos adicionales, no obstante haber contado con los diseños de INGETEC y un margen del diez por ciento (10%) en las cantidades de obra establecidas como riesgo geológico a cargo del concesionario
Jeff Riddel - One of the best experts on this subject based on the ideXlab platform.
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PacketCable Implementation (Networking Technology)
2007Co-Authors: Jeff RiddelAbstract:PacketCable ImplementationDesign, provision, configure, manage, and secure tomorrow's high-value PacketCable networksJeff Riddel, CCIE® No. 12798PacketCable networks use IP technology to enable a wide range of multimedia services, from IP telephony to interactive gaming and beyond. Because PacketCable-based business and residential services are central to the cable industry's strategy for growth, the industry's need for PacketCable expertise is expected to increase dramatically.PacketCable Implementation is the first complete primer on PacketCable network design, provisioning, configuration, management, and security. Drawing on Consulting experience with every leading cable operator, Jeff Riddel presents real-world case studies, sample network designs, configurations, and practical tips for all facets of PacketCable planning and deployment.This book's end-to-end coverage has been designed for cable Engineers and networking professionals with widely diverse backgrounds and experience. Topics covered include PacketCable specifications and functional components, multimedia terminal adapters (MTA) provisioning, call signaling, media streaming, quality of service (QoS), event messaging, security, and much more. Every chapter contains tables and charts that serve as quick, easy references to key points. Each chapter closes with a summary and chapter review questions designed to help you assess and deepen your understanding.PacketCable Implementation brings together everything you need to know about cable networking to service delivery.Jeff Riddel, CCIE® No. 12798, is a network Consulting Engineer on the Cisco® Broadband Advanced Services team. There, he has consulted with all major U.S. MSOs, including Charter Communications, Comcast, AT&T, and Time Warner Cable. Riddel has represented Cisco in PacketCable interoperability testing at CableLabs in Louisville, Colorado. He holds a master's in electrical Engineering from the Georgia Institute of Technology. Discover the PacketCable "big picture," including key application opportunities Learn about the latest generation of PacketCable standards and specifications, including PacketCable 2.0 and DOCSIS 3.0 Understand the functional components of a PacketCable network and how they fit together Walk step-by-step through provisioning, including protocols, flows, and MTA configuration Gain an in-depth understanding of call signaling: message formats, Network-based Call Signaling (NCS), PSTN interconnects, Call Management Server Signaling (CMSS), and more Implement efficient, high-performance media streaming Deploy, analyze, manage, and troubleshoot a state-of-the-art QoS framework Manage crucial network considerations, including lawful interceptIntroductionPart I Introduction and Overview of PacketCableChapter 1PacketCable OverviewChapter 2 PacketCable Functional ComponentsChapter 3 Provisioning OverviewChapter 4 Provisioning FlowsChapter 5 The MTA Configuration FileChapter 6 Signaling Interfaces and MGCP OverviewChapter 7 NCS (Network-based Call Signaling)Chapter 8 TGCP and the PSTN InterconnectChapter 9 Call Management Server Signaling Protocol (CMSS)Chapter 10 Audio CODECsChapter 11 RTP and RTCPChapter 12 DQoS Architecture and FrameworkChapter 13 Analyzing, Implementing, and Troubleshooting DQoSChapter 14 Multimedia ApplicationsChapter 15 Event Messaging and Lawful InterceptChapter 16 PacketCable Network Design ConsiderationsAppendix A Standards and SpecificationsAppendix B Cable Monitor and EtherealAppendix C Complete Call FlowsIndexThis book is part of the Networking Technology Series from Cisco Press®, which offers networking professionals valuable information for constructing efficient networks, understanding new technologies, and building successful careers.Category: Cisco Pressi¾NetworkingCovers: Broadband Multimedia$75.00 USA / $94.00 CAN
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PacketCable Implementation (Networking Technology)
2007Co-Authors: Jeff RiddelAbstract:PacketCable ImplementationDesign, provision, configure, manage, and secure tomorrow's high-value PacketCable networksJeff Riddel, CCIE® No. 12798PacketCable networks use IP technology to enable a wide range of multimedia services, from IP telephony to interactive gaming and beyond. Because PacketCable-based business and residential services are central to the cable industry's strategy for growth, the industry's need for PacketCable expertise is expected to increase dramatically.PacketCable Implementation is the first complete primer on PacketCable network design, provisioning, configuration, management, and security. Drawing on Consulting experience with every leading cable operator, Jeff Riddel presents real-world case studies, sample network designs, configurations, and practical tips for all facets of PacketCable planning and deployment.This book's end-to-end coverage has been designed for cable Engineers and networking professionals with widely diverse backgrounds and experience. Topics covered include PacketCable specifications and functional components, multimedia terminal adapters (MTA) provisioning, call signaling, media streaming, quality of service (QoS), event messaging, security, and much more. Every chapter contains tables and charts that serve as quick, easy references to key points. Each chapter closes with a summary and chapter review questions designed to help you assess and deepen your understanding.PacketCable Implementation brings together everything you need to know about cable networking to service delivery.Jeff Riddel, CCIE® No. 12798, is a network Consulting Engineer on the Cisco® Broadband Advanced Services team. There, he has consulted with all major U.S. MSOs, including Charter Communications, Comcast, AT&T, and Time Warner Cable. Riddel has represented Cisco in PacketCable interoperability testing at CableLabs in Louisville, Colorado. He holds a master's in electrical Engineering from the Georgia Institute of Technology. Discover the PacketCable "big picture," including key application opportunities Learn about the latest generation of PacketCable standards and specifications, including PacketCable 2.0 and DOCSIS 3.0 Understand the functional components of a PacketCable network and how they fit together Walk step-by-step through provisioning, including protocols, flows, and MTA configuration Gain an in-depth understanding of call signaling: message formats, Network-based Call Signaling (NCS), PSTN interconnects, Call Management Server Signaling (CMSS), and more Implement efficient, high-performance media streaming Deploy, analyze, manage, and troubleshoot a state-of-the-art QoS framework Manage crucial network considerations, including lawful interceptIntroductionPart I Introduction and Overview of PacketCableChapter 1PacketCable OverviewChapter 2 PacketCable Functional ComponentsChapter 3 Provisioning OverviewChapter 4 Provisioning FlowsChapter 5 The MTA Configuration FileChapter 6 Signaling Interfaces and MGCP OverviewChapter 7 NCS (Network-based Call Signaling)Chapter 8 TGCP and the PSTN InterconnectChapter 9 Call Management Server Signaling Protocol (CMSS)Chapter 10 Audio CODECsChapter 11 RTP and RTCPChapter 12 DQoS Architecture and FrameworkChapter 13 Analyzing, Implementing, and Troubleshooting DQoSChapter 14 Multimedia ApplicationsChapter 15 Event Messaging and Lawful InterceptChapter 16 PacketCable Network Design ConsiderationsAppendix A Standards and SpecificationsAppendix B Cable Monitor and EtherealAppendix C Complete Call FlowsIndexThis book is part of the Networking Technology Series from Cisco Press®, which offers networking professionals valuable information for constructing efficient networks, understanding new technologies, and building successful careers.Category: Cisco Pressi¾NetworkingCovers: Broadband Multimedia$75.00 USA / $94.00 CAN
Mould, Richard F. - One of the best experts on this subject based on the ideXlab platform.
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Alan Archibald Campbell-Swinton (1863–1930) Electrical Engineer
'VM Media SP. zo.o VM Group SK', 2018Co-Authors: Mould, Richard F.Abstract:Alan Archibald Campbell-Swinton was an electrical Engineer, holding memberships of the Institutes of Civil Engineering, Electrical Engineering and Mechanical Engineering; as well being a Fellow of the Royal Society. He was also one of the early non-medical X-ray experimenters and is notable for producing the first X-ray image in the United Kingdom, on 8 January 1896. He was active in the Röntgen Society of London and became its President in 1911–1912. One of his major interests was the theory of television production. Campbell-Swinton ended his scientific career as a Consulting Engineer in London. This brief biography gives special reference to Campbell-Swinton’s work with X-rays.
Richard F Mould - One of the best experts on this subject based on the ideXlab platform.
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alan archibald campbell swinton 1863 1930 electrical Engineer
Nowotwory, 2018Co-Authors: Richard F MouldAbstract:Alan Archibald Campbell-Swinton was an electrical Engineer, holding memberships of the Institutes of Civil Engineering, Electrical Engineering and Mechanical Engineering; as well being a Fellow of the Royal Society. He was also one of the early non-medical X-ray experimenters and is notable for producing the first X-ray image in the United Kingdom, on 8 January 1896. He was active in the Rontgen Society of London and became its President in 1911–1912. One of his major interests was the theory of television production. Campbell-Swinton ended his scientific career as a Consulting Engineer in London. This brief biography gives special reference to Campbell-Swinton’s work with X-rays.