-
The Third Order - Mandelbrot Fractal Zoom (3e1511) (4k60fps)
This is a unique deep zoom with 3rd order features! This video has some of the best multi-way symmetry that you will find in any of my videos, try starting around 1:42:39 if you are short on time. This zoom video is designed to feature two different embedded Julia sets. You find embedded Julia sets when you pass into the influence of a mini-Mandelbrot. In this video the main Mandelbrot (1st order) creates hair-like features. From the 2nd order Mandelbrot we pick up features of the Julia Set with the mushroom spirals. The 3rd order gives another embedded Julia Set which is recognisable from the very dense colour changes.
Often the 3rd order areas are very dense and increase the iteration count very quickly, which can make them hard to colour. To compensate I've tried to design a c...
published: 02 Dec 2018
-
The third-order magic cube fancy tutorial
Rubiks cube short video
published: 02 Mar 2021
-
How to Make Third Order Intercept (TOI) Measurements
Learn how to characterize weak nonlinear systems and devices.
1-Click Subscribe: http://bit.ly/Labs_Sub
Download "Making Fast and Accurate Power Measurements:" http://bit.ly/2GQ4Qu0
Like our Facebook page: https://www.facebook.com/keysightrf
Check out our blog: http://bit.ly/RFTestBlog
Check out the EEs Talk Tech electrical engineering podcast:
https://eestalktech.com
The signal analyzer we used: http://bit.ly/XSeriesSignalAnalyzers
(The Keysight X-Series MXA 10 Hz - 26.5 GHz)
The signal generator we used: http://bit.ly/XSeriesSignalGenerators
(The Keysight X-Series MXG 9 kHz - 6 GHz)
Twitter: @DanielBogdanoff https://twitter.com/DanielBogdanoff
Transcript:
When two or more signals are modulated, they produce a form of distortion called intermodulation products. These intermod...
published: 24 Jul 2018
-
What is the Dominican Third Order Old vs New
Help us spread the message, Donate to the Apostolate Today!
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Get on the list for our free quarterly magazine, ‘The Fatima Crusader’
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» https://secure.fatima.org/forms/update.asp
SUBSCRIBE to our channel for more videos!
Contact Us:
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» EMAIL: info@thefatimacenter.com
Connect With The Fatima Center And Find Out More!
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» YOUTUBE: https://www.youtube.com/thefatimacenter
» TW...
published: 25 Feb 2019
-
Understanding Third Order Intercept
This video provides a general technical introduction to the concept of third order intercept and how third order intercept measurements are made using a spectrum analyzer or network analyzer.
More information on Rohde & Schwarz signal and spectrum analyzers: https://www.rohde-schwarz.com/us/products/test-and-measurement/signal-spectrum-analyzers/pg_overview_63665.html?cid=802_us_smo_ALL__20-08_a______yt_TMfundmntls_Third-Order-Intercept
Need help with Rohde & Schwarz products & services?
Contact Us: https://www.rohde-schwarz.com/us/m4c/contact-us_253202.html?cid=802_us_smo_ALL__20-08_i______yt_TMfundmntls_
published: 13 Dec 2019
-
You're Smarter Than a Bird: Third Order Thinking
Networking Mixer (7 of 10)
published: 10 Apr 2013
-
#310: 3rd order Intermodulation Distortion (IMD) and their effect in radio receivers
This short video discusses 3rd order IMD (intermodulation distortion) products, what they are, and how they can adversely affect radio reception under crowded band conditions. Finally, I show how the proper use of input attenuation can help mitigate the negative effects of IMD.
Notes: http://www.qsl.net/w2aew/youtube/3rd_order_IMD.pdf
Spectrum display courtesy of the Spectrum View feature on a Tektronix MSO64 oscilloscope - gotta love that fast update rate, even with 50Hz RBW!
published: 24 Apr 2020
-
3rd Order Wire Bending
Cephalometric analysis
published: 08 Sep 2011
-
Homogeneous Linear Third Order Differential Equation y''' - 9y'' + 15y' + 25y = 0
Please Subscribe here, thank you!!! https://goo.gl/JQ8Nys
Homogeneous Linear Third Order Differential Equation y''' - 9y'' + 15y' + 25y = 0
published: 09 Jun 2015
1:57:43
The Third Order - Mandelbrot Fractal Zoom (3e1511) (4k60fps)
This is a unique deep zoom with 3rd order features! This video has some of the best multi-way symmetry that you will find in any of my videos, try starting aro...
This is a unique deep zoom with 3rd order features! This video has some of the best multi-way symmetry that you will find in any of my videos, try starting around 1:42:39 if you are short on time. This zoom video is designed to feature two different embedded Julia sets. You find embedded Julia sets when you pass into the influence of a mini-Mandelbrot. In this video the main Mandelbrot (1st order) creates hair-like features. From the 2nd order Mandelbrot we pick up features of the Julia Set with the mushroom spirals. The 3rd order gives another embedded Julia Set which is recognisable from the very dense colour changes.
Often the 3rd order areas are very dense and increase the iteration count very quickly, which can make them hard to colour. To compensate I've tried to design a colour scheme that works in all points of the video. This makes for a very mellow colour scheme in the 2nd order areas with only minimal changes in hue. As we venture in and out of the 3rd order areas the colour changes are quite dramatic. There is an amazing 3rd order spiral at 50:06 that repeats itself with higher symmetry later in the video.
The music is by "ooyy". If you don't like it, please don't complain, just play your own :-)
This is a traditional Mandelbrot zoom, with traditional linear colouring.
Depth: 2.96e1511
Iterations: 8.8 million.
Software: Kalles Fraktaler / After Effects
Colouring method: Linear.
This video is best viewed at high-resolution. The original high bitrate version will be available for Patreons as soon as it finished uploading. (61.8gb mp4)
Thank-you to my supporters on Patreon.
/********************************************************************************
Patreon: https://www.patreon.com/mathstown (Support, Downloads & Usage Rights)
Website: https://www.maths.town
Twitter: https://twitter.com/MathsTown
Ko-Fi: https://ko-fi.com/mathstown (Buy me a coffee)
********************************************************************************/
https://wn.com/The_Third_Order_Mandelbrot_Fractal_Zoom_(3E1511)_(4K60Fps)
This is a unique deep zoom with 3rd order features! This video has some of the best multi-way symmetry that you will find in any of my videos, try starting around 1:42:39 if you are short on time. This zoom video is designed to feature two different embedded Julia sets. You find embedded Julia sets when you pass into the influence of a mini-Mandelbrot. In this video the main Mandelbrot (1st order) creates hair-like features. From the 2nd order Mandelbrot we pick up features of the Julia Set with the mushroom spirals. The 3rd order gives another embedded Julia Set which is recognisable from the very dense colour changes.
Often the 3rd order areas are very dense and increase the iteration count very quickly, which can make them hard to colour. To compensate I've tried to design a colour scheme that works in all points of the video. This makes for a very mellow colour scheme in the 2nd order areas with only minimal changes in hue. As we venture in and out of the 3rd order areas the colour changes are quite dramatic. There is an amazing 3rd order spiral at 50:06 that repeats itself with higher symmetry later in the video.
The music is by "ooyy". If you don't like it, please don't complain, just play your own :-)
This is a traditional Mandelbrot zoom, with traditional linear colouring.
Depth: 2.96e1511
Iterations: 8.8 million.
Software: Kalles Fraktaler / After Effects
Colouring method: Linear.
This video is best viewed at high-resolution. The original high bitrate version will be available for Patreons as soon as it finished uploading. (61.8gb mp4)
Thank-you to my supporters on Patreon.
/********************************************************************************
Patreon: https://www.patreon.com/mathstown (Support, Downloads & Usage Rights)
Website: https://www.maths.town
Twitter: https://twitter.com/MathsTown
Ko-Fi: https://ko-fi.com/mathstown (Buy me a coffee)
********************************************************************************/
- published: 02 Dec 2018
- views: 1000252
3:47
How to Make Third Order Intercept (TOI) Measurements
Learn how to characterize weak nonlinear systems and devices.
1-Click Subscribe: http://bit.ly/Labs_Sub
Download "Making Fast and Accurate Power Measurements:"...
Learn how to characterize weak nonlinear systems and devices.
1-Click Subscribe: http://bit.ly/Labs_Sub
Download "Making Fast and Accurate Power Measurements:" http://bit.ly/2GQ4Qu0
Like our Facebook page: https://www.facebook.com/keysightrf
Check out our blog: http://bit.ly/RFTestBlog
Check out the EEs Talk Tech electrical engineering podcast:
https://eestalktech.com
The signal analyzer we used: http://bit.ly/XSeriesSignalAnalyzers
(The Keysight X-Series MXA 10 Hz - 26.5 GHz)
The signal generator we used: http://bit.ly/XSeriesSignalGenerators
(The Keysight X-Series MXG 9 kHz - 6 GHz)
Twitter: @DanielBogdanoff https://twitter.com/DanielBogdanoff
Transcript:
When two or more signals are modulated, they produce a form of distortion called intermodulation products. These intermodulation products are distortion that results from nonlinearities in a system. Intermodulation products can prove to be quite problematic because of their close proximity to fundamental frequencies. Today, we’ll discuss how you can characterize your device’s third order intercept value so that you can measure for weak device components and model your system’s nonlinearity.
Hi, I’m Ally, and welcome to Keysight’s Rapid Measurement Series. In this video, we’ll be exploring the third order intercept or TOI.
The problem is that intermodulation products tend to be in the same band as our fundamental frequencies, so we can’t just filter them out.
By intermodulation products we mean that if you have a device that is transmitting a modulated signal, it will create additional signals at frequencies that are not just harmonics. It also creates the sum and difference of the original frequencies.
Another issue we need to be wary of is the fact that intermodulation products’ power levels increase by a factor of three, relative to an increase in the power level of the fundamental tones.
TOI is useful for characterizing weak nonlinear systems and devices such as amplifiers.
The TOI measures your device’s linearity.
To find the TOI, you have to plot out two things- the output power of your fundamental and the output power of your intermodulation products over varying input powers.
It should look something like this.
The third order intercept point, is the extrapolated intersection point of the fundamental power curve and the intermodulation power curve. We can’t measure it directly because our amplifiers aren’t designed for that level of input power, but you can find it mathematically by extrapolating the two curves.
At this point, the power of the fundamental is the same as the power of the intermodulation products.
A high TOI value means your system has good linearity. A low TOI value means your intermodulation products could interfere with your fundamental signal.
The specific TOI requirements depend on the technologies you are working with.
TOI can be measured manually by sweeping through input powers and measuring the fundamental and intermodulation powers. Or some signal analyzers can do it automatically- kind of like a bode plot.
Using this signal analyzer, we are measuring a two-tone modulated signal. We can automatically compute the third order intercept of these signals and place markers on the trace to indicate the measured signals and their third order products.
Here we’ve calculated the third order intercept of a two-tone signal. The TOI measurement begins by taking a sweep of the incoming signal, then it measures the two fundamental tones, and finally measures the third order intermodulation products.
With this measurement table we can also see the absolute power of each fundamental tone, the absolute and relative power for both the upper and lower intermodulation products, and the power of the third order intercept.
This information helps us accurately measure intermodulation and determine how linear our system is. Having a signal analyzer with good dynamic range also gives us the ability to measure the TOI point we are looking for. The better the dynamic range, the improved ability our signal analyzer has to measure harmonically related signals and intermodulation products needed to be able to characterize the system under test.
https://wn.com/How_To_Make_Third_Order_Intercept_(Toi)_Measurements
Learn how to characterize weak nonlinear systems and devices.
1-Click Subscribe: http://bit.ly/Labs_Sub
Download "Making Fast and Accurate Power Measurements:" http://bit.ly/2GQ4Qu0
Like our Facebook page: https://www.facebook.com/keysightrf
Check out our blog: http://bit.ly/RFTestBlog
Check out the EEs Talk Tech electrical engineering podcast:
https://eestalktech.com
The signal analyzer we used: http://bit.ly/XSeriesSignalAnalyzers
(The Keysight X-Series MXA 10 Hz - 26.5 GHz)
The signal generator we used: http://bit.ly/XSeriesSignalGenerators
(The Keysight X-Series MXG 9 kHz - 6 GHz)
Twitter: @DanielBogdanoff https://twitter.com/DanielBogdanoff
Transcript:
When two or more signals are modulated, they produce a form of distortion called intermodulation products. These intermodulation products are distortion that results from nonlinearities in a system. Intermodulation products can prove to be quite problematic because of their close proximity to fundamental frequencies. Today, we’ll discuss how you can characterize your device’s third order intercept value so that you can measure for weak device components and model your system’s nonlinearity.
Hi, I’m Ally, and welcome to Keysight’s Rapid Measurement Series. In this video, we’ll be exploring the third order intercept or TOI.
The problem is that intermodulation products tend to be in the same band as our fundamental frequencies, so we can’t just filter them out.
By intermodulation products we mean that if you have a device that is transmitting a modulated signal, it will create additional signals at frequencies that are not just harmonics. It also creates the sum and difference of the original frequencies.
Another issue we need to be wary of is the fact that intermodulation products’ power levels increase by a factor of three, relative to an increase in the power level of the fundamental tones.
TOI is useful for characterizing weak nonlinear systems and devices such as amplifiers.
The TOI measures your device’s linearity.
To find the TOI, you have to plot out two things- the output power of your fundamental and the output power of your intermodulation products over varying input powers.
It should look something like this.
The third order intercept point, is the extrapolated intersection point of the fundamental power curve and the intermodulation power curve. We can’t measure it directly because our amplifiers aren’t designed for that level of input power, but you can find it mathematically by extrapolating the two curves.
At this point, the power of the fundamental is the same as the power of the intermodulation products.
A high TOI value means your system has good linearity. A low TOI value means your intermodulation products could interfere with your fundamental signal.
The specific TOI requirements depend on the technologies you are working with.
TOI can be measured manually by sweeping through input powers and measuring the fundamental and intermodulation powers. Or some signal analyzers can do it automatically- kind of like a bode plot.
Using this signal analyzer, we are measuring a two-tone modulated signal. We can automatically compute the third order intercept of these signals and place markers on the trace to indicate the measured signals and their third order products.
Here we’ve calculated the third order intercept of a two-tone signal. The TOI measurement begins by taking a sweep of the incoming signal, then it measures the two fundamental tones, and finally measures the third order intermodulation products.
With this measurement table we can also see the absolute power of each fundamental tone, the absolute and relative power for both the upper and lower intermodulation products, and the power of the third order intercept.
This information helps us accurately measure intermodulation and determine how linear our system is. Having a signal analyzer with good dynamic range also gives us the ability to measure the TOI point we are looking for. The better the dynamic range, the improved ability our signal analyzer has to measure harmonically related signals and intermodulation products needed to be able to characterize the system under test.
- published: 24 Jul 2018
- views: 18431
5:08
What is the Dominican Third Order Old vs New
Help us spread the message, Donate to the Apostolate Today!
» https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted;_button_id=SWD2QHWS2BPVS
Join us at our...
Help us spread the message, Donate to the Apostolate Today!
» https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted;_button_id=SWD2QHWS2BPVS
Join us at our next event, find out more
» http://www.fatima.org
Get on the list for our free quarterly magazine, ‘The Fatima Crusader’
» https://secure.fatima.org/forms/crusader.asp
Sign up to our weekly emails for the latest news
» https://secure.fatima.org/forms/update.asp
SUBSCRIBE to our channel for more videos!
Contact Us:
» PHONE: 1-800-263-8160
» EMAIL: info@thefatimacenter.com
Connect With The Fatima Center And Find Out More!
» VISIT: http://www.fatima.org
» NEWSLETTER: https://secure.fatima.org/forms/update.asp
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Our founder, Father Nicholas Gruner, described the purpose of Our Lady’s Apostolate: “Our mission is to ensure that the entire Message of Fatima is fully known, accurately understood, and deeply appreciated so that it may be followed by all.”
The Fatima Center has been faithful to this mission for 39 years now. Our Lady made it clear that the Message of Fatima is the ONLY solution to the crisis in the Church and the world.
https://wn.com/What_Is_The_Dominican_Third_Order_Old_Vs_New
Help us spread the message, Donate to the Apostolate Today!
» https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted;_button_id=SWD2QHWS2BPVS
Join us at our next event, find out more
» http://www.fatima.org
Get on the list for our free quarterly magazine, ‘The Fatima Crusader’
» https://secure.fatima.org/forms/crusader.asp
Sign up to our weekly emails for the latest news
» https://secure.fatima.org/forms/update.asp
SUBSCRIBE to our channel for more videos!
Contact Us:
» PHONE: 1-800-263-8160
» EMAIL: info@thefatimacenter.com
Connect With The Fatima Center And Find Out More!
» VISIT: http://www.fatima.org
» NEWSLETTER: https://secure.fatima.org/forms/update.asp
» FACEBOOK: https://www.facebook.com/Fatima-Center-95998926441
» YOUTUBE: https://www.youtube.com/thefatimacenter
» TWITTER: https://twitter.com/TheFatimaCenter
Our founder, Father Nicholas Gruner, described the purpose of Our Lady’s Apostolate: “Our mission is to ensure that the entire Message of Fatima is fully known, accurately understood, and deeply appreciated so that it may be followed by all.”
The Fatima Center has been faithful to this mission for 39 years now. Our Lady made it clear that the Message of Fatima is the ONLY solution to the crisis in the Church and the world.
- published: 25 Feb 2019
- views: 8084
12:37
Understanding Third Order Intercept
This video provides a general technical introduction to the concept of third order intercept and how third order intercept measurements are made using a spectru...
This video provides a general technical introduction to the concept of third order intercept and how third order intercept measurements are made using a spectrum analyzer or network analyzer.
More information on Rohde & Schwarz signal and spectrum analyzers: https://www.rohde-schwarz.com/us/products/test-and-measurement/signal-spectrum-analyzers/pg_overview_63665.html?cid=802_us_smo_ALL__20-08_a______yt_TMfundmntls_Third-Order-Intercept
Need help with Rohde & Schwarz products & services?
Contact Us: https://www.rohde-schwarz.com/us/m4c/contact-us_253202.html?cid=802_us_smo_ALL__20-08_i______yt_TMfundmntls_
https://wn.com/Understanding_Third_Order_Intercept
This video provides a general technical introduction to the concept of third order intercept and how third order intercept measurements are made using a spectrum analyzer or network analyzer.
More information on Rohde & Schwarz signal and spectrum analyzers: https://www.rohde-schwarz.com/us/products/test-and-measurement/signal-spectrum-analyzers/pg_overview_63665.html?cid=802_us_smo_ALL__20-08_a______yt_TMfundmntls_Third-Order-Intercept
Need help with Rohde & Schwarz products & services?
Contact Us: https://www.rohde-schwarz.com/us/m4c/contact-us_253202.html?cid=802_us_smo_ALL__20-08_i______yt_TMfundmntls_
- published: 13 Dec 2019
- views: 103328
6:36
#310: 3rd order Intermodulation Distortion (IMD) and their effect in radio receivers
This short video discusses 3rd order IMD (intermodulation distortion) products, what they are, and how they can adversely affect radio reception under crowded b...
This short video discusses 3rd order IMD (intermodulation distortion) products, what they are, and how they can adversely affect radio reception under crowded band conditions. Finally, I show how the proper use of input attenuation can help mitigate the negative effects of IMD.
Notes: http://www.qsl.net/w2aew/youtube/3rd_order_IMD.pdf
Spectrum display courtesy of the Spectrum View feature on a Tektronix MSO64 oscilloscope - gotta love that fast update rate, even with 50Hz RBW!
https://wn.com/310_3Rd_Order_Intermodulation_Distortion_(Imd)_And_Their_Effect_In_Radio_Receivers
This short video discusses 3rd order IMD (intermodulation distortion) products, what they are, and how they can adversely affect radio reception under crowded band conditions. Finally, I show how the proper use of input attenuation can help mitigate the negative effects of IMD.
Notes: http://www.qsl.net/w2aew/youtube/3rd_order_IMD.pdf
Spectrum display courtesy of the Spectrum View feature on a Tektronix MSO64 oscilloscope - gotta love that fast update rate, even with 50Hz RBW!
- published: 24 Apr 2020
- views: 35543
4:43
Homogeneous Linear Third Order Differential Equation y''' - 9y'' + 15y' + 25y = 0
Please Subscribe here, thank you!!! https://goo.gl/JQ8Nys
Homogeneous Linear Third Order Differential Equation y''' - 9y'' + 15y' + 25y = 0
Please Subscribe here, thank you!!! https://goo.gl/JQ8Nys
Homogeneous Linear Third Order Differential Equation y''' - 9y'' + 15y' + 25y = 0
https://wn.com/Homogeneous_Linear_Third_Order_Differential_Equation_Y'''_9Y''_15Y'_25Y_0
Please Subscribe here, thank you!!! https://goo.gl/JQ8Nys
Homogeneous Linear Third Order Differential Equation y''' - 9y'' + 15y' + 25y = 0
- published: 09 Jun 2015
- views: 87633