Top Tweets for #AcousticsSimulation
If you guessed all of the above, you’d be correct! 🌟
Learn about the power of PMSMs and how you can analyze their noise generation using #AcousticsSimulation on the blog: https://t.co/j0tpzn0WoP
As audio products get slimmer, they provide less room for #loudspeakers. Can smaller speakers still deliver great sound?
Companies like Dolby Laboratories and Samsung Research America prove it’s possible. Get the details here: https://t.co/53QbUoFAsU #AcousticsSimulation

*New story*
Read about how a leading developer of innovative audio systems and technologies is using #AcousticsSimulation to develop 3D #SurroundSound technology for TVs: https://t.co/nwH76RDBhW

Underground train grids span large areas in major cities around the world.
Using #AcousticsSimulation, #architects and engineers can analyze train-induced noise when building in urban areas.
Learn more in this new tutorial: https://t.co/x10ksfsmW4

“If we can make materials mimicking moth scales, applications can include high-efficiency ultrasonic acoustic absorbers.”
Read the full story here: https://t.co/ceEIPqPwK2 #AcousticsSimulation

You can now efficiently model finite-amplitude high sound-pressure-level nonlinear waves in fluids using the Acoustics Module.
Get a comprehensive overview of the acoustics updates in COMSOL® version 5.6 here: https://t.co/cI2fGNymDz #AcousticsSimulation

What is the optimal way to model #FuelTank vibration? Find out on the blog: https://t.co/I1II7dOgAf #AcousticsSimulation

*Tutorial model*
Damping pads are lightweight and used in many different industries to reduce the noise generated by vibrating panels. Learn how to analyze acoustic damping pads here: https://t.co/yTnWG1pD24 #AcousticsSimulation

A #demultiplexer is a device that directs different frequency bands to different outputs. Learn how to model one in this tutorial: https://t.co/XAHa4acbFJ #AcousticsSimulation

The performance and comfort of hearing aids are affected by phenomena like feedback and the occlusion effect.
Researchers can use #AcousticsSimulation to reduce these effects and design better in-ear #AudioProducts... https://t.co/zcdpgkoBsl
Learn about how engineers can use #AcousticsSimulation to optimize the design and comfort of #HearingAids (and other in-ear audio products) in this blog post, featuring 2 relevant tutorial models: https://t.co/74BblLoNUW (~5-minute read)

Learn how to design optimized vehicle #SoundSystems with #AcousticsSimulation and see plots of the pressure, sound pressure level, and intensity inside the car: https://t.co/iuWu0pqogj *Tutorial model*

Engineers and scientists have submitted 400+ technical papers and presentations on modeling and simulating #acoustics phenomena. Check them out here: https://t.co/H4sK3aX5ip #AcousticsSimulation
The Elastic Animation_immersion_01Waves, Time Explicit interface is based on the discontinuous #Galerkin method and enables efficient computation of acoustically large models.
Learn how to use it here: https://t.co/Ax59HdYjrG #AcousticsSimulation
What’s the optimal placement for loudspeakers 🔈 in a living room? You can use #AcousticsSimulation to find out: https://t.co/5vL4CtZphS #TutorialModel

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