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        <title>CAESES</title>
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        <description>CAESES  is an integration and automation platform that includes simulation-ready variable CAD, optimization algorithms, and post-processing. Customers use CAESES together with their simulation tool (most often CFD) to design and develop better products, faster, and at lower cost. Typical areas of interest include turbomachines, ducts and manifolds, engine components, aerodynamic bodies, ship hulls, ... Welcome to our video channel! As a new commercial user or a student, we recommend to start with the tutorial videos below. These short videos should give you a good start with CAESES®. Creating helpful videos is currently work in progress, and we will regularly add new ones. Feel free to send us your comments and feedback on these videos. Explore the full library of CAESES tutorials (beginner → advanced), plus downloadable examples on our documentation website.</description>
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            <title><![CDATA[Simulation-Driven Design: How to Utilize Simulation to Create Better Products - Part3]]></title>
            <link>https://watch.caeses.com/w/fc1dBdGexB4LmajWtan22R</link>
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            <pubDate>Tue, 26 May 2026 13:06:32 GMT</pubDate>
            <description><![CDATA[Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. S...]]></description>
            <content:encoded><![CDATA[<p>Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products</p>
<p>Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. Stefan Harries.</p>
<p>Have fun getting insights on methods and concepts behind simulation-driven design. Furthermore, you will be able to see specific examples, applications and benefits of SDD for all kinds of industries.</p>
<p>Our CEO Dr. Stefan Harries, who is also an external lecturer at the Technical University of Berlin, talks about:</p>
<ul>
<li>An introduction and motivation behind simulation-driven design (SDD)</li>
<li>The concept of simulation-driven design
<ul>
<li>Automated optimization</li>
<li>Variable geometry</li>
</ul>
</li>
<li>Insights on exclusive industry example applications for:
<ul>
<li>Thrusters</li>
<li>Gas turbines</li>
<li>Turbochargers</li>
<li>Container carriers</li>
<li>CO2-emissions</li>
</ul>
</li>
<li>Outlook</li>
<li>Our company FRIENDSHIP SYSTEMS and CAESES</li>
</ul>
]]></content:encoded>
            <dc:creator>friendship_systems</dc:creator>
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            <media:title type="plain">Simulation-Driven Design: How to Utilize Simulation to Create Better Products - Part3</media:title>
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            <title><![CDATA[Simulation-Driven Design: How to Utilize Simulation to Create Better Products - Part2]]></title>
            <link>https://watch.caeses.com/w/h5wJAWQr7xWUgQrkcBh82k</link>
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            <pubDate>Tue, 26 May 2026 12:48:06 GMT</pubDate>
            <description><![CDATA[Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. S...]]></description>
            <content:encoded><![CDATA[<p>Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products</p>
<p>Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. Stefan Harries.</p>
<p>Have fun getting insights on methods and concepts behind simulation-driven design. Furthermore, you will be able to see specific examples, applications and benefits of SDD for all kinds of industries.</p>
<p>Our CEO Dr. Stefan Harries, who is also an external lecturer at the Technical University of Berlin, talks about:</p>
<ul>
<li>An introduction and motivation behind simulation-driven design (SDD)</li>
<li>The concept of simulation-driven design
<ul>
<li>Automated optimization</li>
<li>Variable geometry</li>
</ul>
</li>
<li>Insights on exclusive industry example applications for:
<ul>
<li>Thrusters</li>
<li>Gas turbines</li>
<li>Turbochargers</li>
<li>Container carriers</li>
<li>CO2-emissions</li>
</ul>
</li>
<li>Outlook</li>
<li>Our company FRIENDSHIP SYSTEMS and CAESES</li>
</ul>
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            <media:title type="plain">Simulation-Driven Design: How to Utilize Simulation to Create Better Products - Part2</media:title>
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            <title><![CDATA[Simulation-Driven Design: How to Utilize Simulation to Create Better Products - Part1]]></title>
            <link>https://watch.caeses.com/w/tkNpSRuQpvLyv3kkg9EUAp</link>
            <guid>https://watch.caeses.com/w/tkNpSRuQpvLyv3kkg9EUAp</guid>
            <pubDate>Tue, 26 May 2026 12:33:12 GMT</pubDate>
            <description><![CDATA[Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. S...]]></description>
            <content:encoded><![CDATA[<p>Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products</p>
<p>Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. Stefan Harries.</p>
<p>Have fun getting insights on methods and concepts behind simulation-driven design. Furthermore, you will be able to see specific examples, applications and benefits of SDD for all kinds of industries.</p>
<p>Our CEO Dr. Stefan Harries, who is also an external lecturer at the Technical University of Berlin, talks about:</p>
<ul>
<li>An introduction and motivation behind simulation-driven design (SDD)</li>
<li>The concept of simulation-driven design<br />
- Automated optimization<br />
- Variable geometry</li>
<li>Insights on exclusive industry example applications for:<br />
- Thrusters<br />
- Gas turbines<br />
- Turbochargers<br />
- Container carriers<br />
- CO2-emissions</li>
<li>Outlook</li>
<li>Our company FRIENDSHIP SYSTEMS and CAESES</li>
</ul>
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            <media:title type="plain">Simulation-Driven Design: How to Utilize Simulation to Create Better Products - Part1</media:title>
            <media:description type="plain">Lecture Videos on Simulation-Driven Design: How to Utilize Simulation to Create Better Products Develop an understanding and an appreciation of simulation-driven design (SDD) with these 3 lecture videos, recorded by FRIENDSHIP SYSTEMS CEO Dr. S...</media:description>
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            <title><![CDATA[A Quick Guide to the Geometric Modeling of Ships]]></title>
            <link>https://watch.caeses.com/w/fpe1gGgeNMwdVK88sq91ZF</link>
            <guid>https://watch.caeses.com/w/fpe1gGgeNMwdVK88sq91ZF</guid>
            <pubDate>Tue, 26 May 2026 12:23:37 GMT</pubDate>
            <description><![CDATA[This quick guide to the geometric modeling of ships is a recorded lecture given by FRIENDSHIP SYSTEMS CEO Dr. Stefan Harries. Have fun getting insights on the art of parametric modeling of ships and some math behind it. Among other topics, our...]]></description>
            <content:encoded><![CDATA[<p>This quick guide to the geometric modeling of ships is a recorded lecture given by FRIENDSHIP SYSTEMS CEO Dr. Stefan Harries.<br />
Have fun getting insights on the art of parametric modeling of ships and some math behind it.</p>
<p>Among other topics, our CEO Dr. Stefan Harries talks about:</p>
<ul>
<li>Why are ships so curvy?</li>
<li>Why do we need a mathematical representation?</li>
<li>The art of parametric modeling</li>
<li>Simulation-driven design in a nutshell</li>
</ul>
]]></content:encoded>
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            <media:title type="plain">A Quick Guide to the Geometric Modeling of Ships</media:title>
            <media:description type="plain">This quick guide to the geometric modeling of ships is a recorded lecture given by FRIENDSHIP SYSTEMS CEO Dr. Stefan Harries. Have fun getting insights on the art of parametric modeling of ships and some math behind it. Among other topics, our...</media:description>
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            <title><![CDATA[Efficient Simulation-Driven Volute Optimization]]></title>
            <link>https://watch.caeses.com/w/q1MBFCwhRJvQYrQ5pBM4Mz</link>
            <guid>https://watch.caeses.com/w/q1MBFCwhRJvQYrQ5pBM4Mz</guid>
            <pubDate>Wed, 26 Nov 2025 14:42:07 GMT</pubDate>
            <description><![CDATA[Efficient Simulation-Driven Volute Optimization FRIENDSHIP SYSTEMS, GridPro, and Flowthermolab, demonstrate an ultra-efficient, fully automated workflow for volute shape optimization. You can discover how to: Create parametric geometry in C...]]></description>
            <content:encoded><![CDATA[<p>Efficient Simulation-Driven Volute Optimization<br />
FRIENDSHIP SYSTEMS, GridPro, and Flowthermolab, demonstrate an ultra-efficient, fully automated workflow for volute shape optimization.</p>
<p>You can discover how to:</p>
<ul>
<li>Create parametric geometry in CAESES.</li>
<li>Generate automated structured meshes in GridPro.</li>
<li>Run CFD simulations seamlessly with CFX and let the results drive the optimization.</li>
</ul>
<p>See how these tools connect into one smooth, simulation-driven process – from geometry to performance evaluation.</p>
]]></content:encoded>
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            <media:title type="plain">Efficient Simulation-Driven Volute Optimization</media:title>
            <media:description type="plain">Efficient Simulation-Driven Volute Optimization FRIENDSHIP SYSTEMS, GridPro, and Flowthermolab, demonstrate an ultra-efficient, fully automated workflow for volute shape optimization. You can discover how to: Create parametric geometry in C...</media:description>
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            <title><![CDATA[Automated Geometry Variation and Assessment in CAESES]]></title>
            <link>https://watch.caeses.com/w/oeUv6ppQg51BmswDz8X4NN</link>
            <guid>https://watch.caeses.com/w/oeUv6ppQg51BmswDz8X4NN</guid>
            <pubDate>Mon, 07 Jul 2025 16:48:44 GMT</pubDate>
            <description><![CDATA[This tutorial demonstrates how to automatically create different geometry design variants and how to assess them.]]></description>
            <content:encoded><![CDATA[<p>This tutorial demonstrates how to automatically create different geometry design variants and how to assess them.</p>
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            <title><![CDATA[First Modeling Steps in CAESES]]></title>
            <link>https://watch.caeses.com/w/srsYVf6cgsBLs85dVueCmm</link>
            <guid>https://watch.caeses.com/w/srsYVf6cgsBLs85dVueCmm</guid>
            <pubDate>Mon, 07 Jul 2025 16:35:32 GMT</pubDate>
            <description><![CDATA[This tutorial will show you how to create a fully-parametric duct. It will cover a basic project structure and the creation of curves, surfaces and solid bodies (BReps).]]></description>
            <content:encoded><![CDATA[<p>This tutorial will show you how to create a fully-parametric duct. It will cover a basic project structure and the creation of curves, surfaces and solid bodies (BReps).</p>
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            <title><![CDATA[Design and Optimization of Ship Hulls and Propellers]]></title>
            <link>https://watch.caeses.com/w/hLQmrMzMEiDgj7iiYAp91c</link>
            <guid>https://watch.caeses.com/w/hLQmrMzMEiDgj7iiYAp91c</guid>
            <pubDate>Wed, 28 May 2025 17:08:00 GMT</pubDate>
            <description><![CDATA[The newly released CAESES version 5.3 was developed with a strong focus on the design of marine systems such as ship hulls and propulsors. Its new functionality is primarily dedicated to users with the CAESES add-ons Maritime and Propeller, but it...]]></description>
            <content:encoded><![CDATA[<p>The newly released CAESES version 5.3 was developed with a strong focus on the design of marine systems such as ship hulls and propulsors. Its new functionality is primarily dedicated to users with the CAESES add-ons Maritime and Propeller, but it also brings along several news and improvements that will benefit all users.</p>
<p>This webinar gives a more detailed introduction to the new functionality and demonstrates its use for different use cases.</p>
<p>It covers in various live demonstrations:</p>
<ul>
<li>How to create a ship in a couple of minutes with the ship modeling workflow</li>
<li>How to perform hydrostatics computations</li>
<li>How to design a propeller with the propeller workflow</li>
</ul>
]]></content:encoded>
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            <media:description type="plain">The newly released CAESES version 5.3 was developed with a strong focus on the design of marine systems such as ship hulls and propulsors. Its new functionality is primarily dedicated to users with the CAESES add-ons Maritime and Propeller, but it...</media:description>
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            <title><![CDATA[Analysis Tools for Imported Blades]]></title>
            <link>https://watch.caeses.com/w/edr992ScBvo3kG3xTUcS5E</link>
            <guid>https://watch.caeses.com/w/edr992ScBvo3kG3xTUcS5E</guid>
            <pubDate>Fri, 03 Nov 2023 11:03:09 GMT</pubDate>
            <description><![CDATA[Quickly analyze any imported or existing blade geometry with the analysis tools in CAESES. You can now easily extract the mean camber surface, determine the blade and wrap angle (beta/theta) distributions, or transform the 3D edges to the 2D merid...]]></description>
            <content:encoded><![CDATA[<p>Quickly analyze any imported or existing blade geometry with the analysis tools in CAESES. You can now easily extract the mean camber surface, determine the blade and wrap angle (beta/theta) distributions, or transform the 3D edges to the 2D meridional plane. This toolkit allows you to quickly build a fully-parametric model from imported geometries.</p>
]]></content:encoded>
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            <media:title type="plain">Analysis Tools for Imported Blades</media:title>
            <media:description type="plain">Quickly analyze any imported or existing blade geometry with the analysis tools in CAESES. You can now easily extract the mean camber surface, determine the blade and wrap angle (beta/theta) distributions, or transform the 3D edges to the 2D merid...</media:description>
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            <title><![CDATA[Turbomachinery Design in CAESES 5.2]]></title>
            <link>https://watch.caeses.com/w/wqwHeqBWccAQefCF39x4eT</link>
            <guid>https://watch.caeses.com/w/wqwHeqBWccAQefCF39x4eT</guid>
            <pubDate>Thu, 19 Oct 2023 12:54:25 GMT</pubDate>
            <description><![CDATA[CAESES® 5.2 offers a wide selection of components, workflows, and methods to simplify and streamline the parametric modeling of turbomachinery geometries, while maintaining the high level of freedom that CAESES® is known for. This webinar gives...]]></description>
            <content:encoded><![CDATA[<p>CAESES® 5.2 offers a wide selection of components, workflows, and methods to simplify and streamline the parametric modeling of turbomachinery geometries, while maintaining the high level of freedom that CAESES® is known for.</p>
<p>This webinar gives a more detailed introduction to the new functionality and demonstrates its use for different applications.</p>
<p>It covers in various live demonstrations:</p>
<ul>
<li>How to design a centrifugal blade with the turbomachine workflow</li>
<li>How to design an axial blade with the turbomachine workflow</li>
<li>How to create variable radius fillets</li>
</ul>
]]></content:encoded>
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            <media:description type="plain">CAESES® 5.2 offers a wide selection of components, workflows, and methods to simplify and streamline the parametric modeling of turbomachinery geometries, while maintaining the high level of freedom that CAESES® is known for. This webinar gives...</media:description>
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            <title><![CDATA[Cloud-Based Optimization of a Compressor Stator]]></title>
            <link>https://watch.caeses.com/w/16by3YKiZA3xZYS2TqEgfH</link>
            <guid>https://watch.caeses.com/w/16by3YKiZA3xZYS2TqEgfH</guid>
            <pubDate>Thu, 19 Oct 2023 09:42:02 GMT</pubDate>
            <description><![CDATA[This webinar was a cooperation with Flexcompute. It presents a project in which a compressor stator was optimized with the goals of reducing pressure loss and minimizing the outlet flow angle deviation. A highly efficient process was used, incl...]]></description>
            <content:encoded><![CDATA[<p>This webinar was a cooperation with Flexcompute. It presents a project in which a compressor stator was optimized with the goals of reducing pressure loss and minimizing the outlet flow angle deviation.</p>
<p>A highly efficient process was used, including a smart geometry parameterization in CAESES® and the high-speed cloud-based CFD solver Flow360.</p>
]]></content:encoded>
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            <media:title type="plain">Cloud-Based Optimization of a Compressor Stator</media:title>
            <media:description type="plain">This webinar was a cooperation with Flexcompute. It presents a project in which a compressor stator was optimized with the goals of reducing pressure loss and minimizing the outlet flow angle deviation. A highly efficient process was used, incl...</media:description>
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            <title><![CDATA[How to Design an Axial Compressor with the Turbo Machine Workflow]]></title>
            <link>https://watch.caeses.com/w/gwsZBs3Aav8mwbkgyv5xaV</link>
            <guid>https://watch.caeses.com/w/gwsZBs3Aav8mwbkgyv5xaV</guid>
            <pubDate>Wed, 06 Sep 2023 15:42:14 GMT</pubDate>
            <description><![CDATA[This video shows you how to use the turbo machine workflow (CAESES Version 5.2.0 or newer) to design a fully-parametric axial compressor blade in CAESES in 20 minutes.]]></description>
            <content:encoded><![CDATA[<p>This video shows you how to use the turbo machine workflow (CAESES Version 5.2.0 or newer) to design a fully-parametric axial compressor blade in CAESES in 20 minutes.</p>
]]></content:encoded>
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            <media:title type="plain">How to Design an Axial Compressor with the Turbo Machine Workflow</media:title>
            <media:description type="plain">This video shows you how to use the turbo machine workflow (CAESES Version 5.2.0 or newer) to design a fully-parametric axial compressor blade in CAESES in 20 minutes.</media:description>
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            <title><![CDATA[How To Design a Pump with the Turbo Machine Workflow]]></title>
            <link>https://watch.caeses.com/w/oWEmhhv53hss3wHuEtd2Z8</link>
            <guid>https://watch.caeses.com/w/oWEmhhv53hss3wHuEtd2Z8</guid>
            <pubDate>Thu, 31 Aug 2023 14:51:08 GMT</pubDate>
            <description><![CDATA[This video shows you how to use the turbo machine workflow (CAESES Version 5.2.0 or newer) to design a fully-parametric centrifugal pump in CAESES in 20 minutes.]]></description>
            <content:encoded><![CDATA[<p>This video shows you how to use the turbo machine workflow (CAESES Version 5.2.0 or newer) to design a fully-parametric centrifugal pump in CAESES in 20 minutes.</p>
]]></content:encoded>
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            <media:title type="plain">How To Design a Pump with the Turbo Machine Workflow</media:title>
            <media:description type="plain">This video shows you how to use the turbo machine workflow (CAESES Version 5.2.0 or newer) to design a fully-parametric centrifugal pump in CAESES in 20 minutes.</media:description>
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        <item>
            <title><![CDATA[Adjust Surface Boundary Curves]]></title>
            <link>https://watch.caeses.com/w/82Bpj9LfPSaoyQTcuferUD</link>
            <guid>https://watch.caeses.com/w/82Bpj9LfPSaoyQTcuferUD</guid>
            <pubDate>Wed, 20 Jul 2022 10:36:41 GMT</pubDate>
            <description><![CDATA[This video explains how to adjust the boundary curves of surfaces with the help of post-processing operations.]]></description>
            <content:encoded><![CDATA[<p>This video explains how to adjust the boundary curves of surfaces with the help of post-processing operations.</p>
]]></content:encoded>
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            <media:title type="plain">Adjust Surface Boundary Curves</media:title>
            <media:description type="plain">This video explains how to adjust the boundary curves of surfaces with the help of post-processing operations.</media:description>
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            <title><![CDATA[Visualize the Influence of Design Variables]]></title>
            <link>https://watch.caeses.com/w/tvEDgJu9ThsVZPPDUTCiJJ</link>
            <guid>https://watch.caeses.com/w/tvEDgJu9ThsVZPPDUTCiJJ</guid>
            <pubDate>Tue, 17 May 2022 10:44:56 GMT</pubDate>
            <description><![CDATA[CAESES 5.1 offers conveniently accessible functionality to visualize the influence of the design variables on the geometry’s shape, using so-called design velocities. Design velocities are defined as the normal displacement of the model surface...]]></description>
            <content:encoded><![CDATA[<p>CAESES 5.1 offers conveniently accessible functionality to visualize the influence of the design variables on the geometry’s shape, using so-called design velocities.</p>
<p>Design velocities are defined as the normal displacement of the model surface due to a change in value of a design variable. They display the regions of influence for a design variable from a geometric point of view and are especially helpful in understanding the shape modification possibilities for a given setup.</p>
]]></content:encoded>
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            <media:title type="plain">Visualize the Influence of Design Variables</media:title>
            <media:description type="plain">CAESES 5.1 offers conveniently accessible functionality to visualize the influence of the design variables on the geometry’s shape, using so-called design velocities. Design velocities are defined as the normal displacement of the model surface...</media:description>
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        <item>
            <title><![CDATA[Efficiently Optimize your Geometry with Morphing in CAESES 5]]></title>
            <link>https://watch.caeses.com/w/9FoYKavVPD9Jw3bQ4qBX7J</link>
            <guid>https://watch.caeses.com/w/9FoYKavVPD9Jw3bQ4qBX7J</guid>
            <pubDate>Thu, 12 May 2022 09:16:22 GMT</pubDate>
            <description><![CDATA[In this webinar recording you can learn in detail how the morphing approach in CAESES 5 can be used to quickly optimize any existing geometry.]]></description>
            <content:encoded><![CDATA[<p>In this webinar recording you can learn in detail how the morphing approach in CAESES 5 can be used to quickly optimize any existing geometry.</p>
]]></content:encoded>
            <dc:creator>friendship_systems</dc:creator>
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            <title><![CDATA[Faces from Planar and Open BRep Edges]]></title>
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            <title><![CDATA[Set the Attributes of a Feature]]></title>
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            <pubDate>Thu, 28 Apr 2022 14:59:15 GMT</pubDate>
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            <title><![CDATA[Dynamic Types]]></title>
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            <pubDate>Tue, 26 Apr 2022 14:45:00 GMT</pubDate>
            <description><![CDATA[CAESES follows a clean object-oriented dependency structure to create a fully parametric model. Dynamic Types allow you to change the type (or creation method) of your objects (Points, Curves, Surfaces or BReps) and lets you keep the dependencies...]]></description>
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Dynamic Types allow you to change the type (or creation method) of your objects (Points, Curves, Surfaces or BReps) and lets you keep the dependencies and links inside your project.<br />
You can also use your custom Feature Definitions as new types for objects.</p>
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            <title><![CDATA[Introduction to BRep Modeling]]></title>
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            <pubDate>Wed, 06 Apr 2022 14:01:34 GMT</pubDate>
            <description><![CDATA[This video focuses on the BRep modeling options and shows how to join different surfaces,, extrude edges,, combine two solids,, insert fillets between two solids, or, assign colors.]]></description>
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<li>join different surfaces,</li>
<li>extrude edges,</li>
<li>combine two solids,</li>
<li>insert fillets between two solids, or</li>
<li>assign colors.</li>
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