UConn HKN
UConn HKN
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Video

Circuits 1: Mesh Current Analysis Example
zhlédnutí 3,2KPřed 5 lety
Siddarth Suresh of UConn HKN uses mesh current analysis to determine the values of current loop in the given circuit. Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to see us do? Post in the comments below or email us at hknuconn@gmail.com
Information Extraction/ Estimation - Lecture 01 - Dr. Yaakov Bar-Shalom - University of Connecticut
zhlédnutí 1,6KPřed 5 lety
Recordings of a Lecture Series for ENGR 352 Information Modeling and Extraction at the University of Connecticut from 2004. The presenter is Board of Trustees Distinguished Professor & Marianne E. Klewin Endowed Professor in Engineering Yaakov Bar-Shalom. The accompanying text for the course may be purchased on Amazon at the following link: www.amazon.com/gp/product/047141655X/ref=dbs_a_def_rwt...
Information Extraction/ Estimation - Lecture 02 - Dr. Yaakov Bar-Shalom - University of Connecticut
zhlédnutí 669Před 5 lety
Recordings of a Lecture Series for ENGR 352 Information Modeling and Extraction at the University of Connecticut from 2004. The presenter is Board of Trustees Distinguished Professor & Marianne E. Klewin Endowed Professor in Engineering Yaakov Bar-Shalom. The accompanying text for the course may be purchased on Amazon at the following link: www.amazon.com/gp/product/047141655X/ref=dbs_a_def_rwt...
Semiconductor Physics - Band Diagrams (Pt. 1)
zhlédnutí 943Před 6 lety
Barath goes over how to draw band diagrams.
Digital Communications: Optimal Receiver - Decision Theory
zhlédnutí 3,8KPřed 6 lety
Graduate Student Andrew Finelli of UConn HKN concludes a video series about the Optimal Coherent Receiver for AWGN channels in Digital Communications. The content of these videos coem from notes which you can download here: drive.google.com/open?id=1CI_vcnEtMT7xTNyph7_2m_ON3ON9bDVM Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to ...
Digital Communications: Optimal Receiver - Signal Space Formulation
zhlédnutí 3,8KPřed 6 lety
Graduate Student Andrew Finelli of UConn HKN continues a video series about the Optimal Coherent Receiver for AWGN channels in Digital Communications. The content of these videos coem from notes which you can download here: drive.google.com/open?id=1CI_vcnEtMT7xTNyph7_2m_ON3ON9bDVM Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to ...
Digital Communications: Optimal Receiver - Orthogonalization
zhlédnutí 2,3KPřed 6 lety
Graduate Student Andrew Finelli of UConn HKN continues a video series about the Optimal Coherent Receiver for AWGN channels in Digital Communications. The content of these videos coem from notes which you can download here: drive.google.com/open?id=1CI_vcnEtMT7xTNyph7_2m_ON3ON9bDVM Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to ...
Digital Communications: Optimal Receiver - Discrete Signals
zhlédnutí 3KPřed 6 lety
Graduate Student Andrew Finelli of UConn HKN continues a video series about the Optimal Coherent Receiver for AWGN channels in Digital Communications. The content of these videos coem from notes which you can download here: drive.google.com/open?id=1CI_vcnEtMT7xTNyph7_2m_ON3ON9bDVM Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to ...
Digital Communications: Optimal Receiver Intro
zhlédnutí 6KPřed 6 lety
Graduate Student Andrew Finelli of UConn HKN begins a video series about the Optimal Coherent Receiver for AWGN channels in Digital Communications. The content of these videos coem from notes which you can download here: drive.google.com/open?id=1CI_vcnEtMT7xTNyph7_2m_ON3ON9bDVM Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to see...
Digital Communications: Viterbi Algorithm
zhlédnutí 94KPřed 6 lety
Graduate Student Zac Sutton of Uconn HKN explains how to encode a data stream using a convolutional encoder and how to decode the received sequence using the Viterbi Algorithm. Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to see us do? Post in the comments below or email us at "questions.hkn.uconn@gmail.com
Digital Communications: Convolutional Codes
zhlédnutí 50KPřed 6 lety
Graduate Student Zac Sutton of Uconn HKN explains how to encode a data stream using a convolutional encoder and how to decode the received sequence using the Viterbi Algorithm. Still don't get it? Have questions relating to this topic or others? Suggestions for other problems you'd like to see us do? Post in the comments below or email us at "questions.hkn.uconn@gmail.com
Semiconductor Physics - Introduction
zhlédnutí 1,6KPřed 6 lety
Barath, graduate student under Faquir Jain and member of UConn HKN, introduces semiconductor physics.
Circuits II - Emitter Stabilized Circuit - Example
zhlédnutí 2KPřed 6 lety
Andrew works on a BJT based circuits problem, one that asks you to find current and voltage values in an emitter stabilized circuit.
Circuits I - Norton Equivalent Circuit - Example
zhlédnutí 26KPřed 6 lety
Alex "The Boy" tells us how to use Norton's Theorem to convert a regular circuit into its Norton Equivalent.
Circuits I - Passive Sign Convention - Example
zhlédnutí 13KPřed 6 lety
Circuits I - Passive Sign Convention - Example
Circuits 1 - RL Circuit - Example
zhlédnutí 3,8KPřed 6 lety
Circuits 1 - RL Circuit - Example
Digital Communications: Random Processes Examples
zhlédnutí 2,7KPřed 6 lety
Digital Communications: Random Processes Examples
Digital Communications: Random Processes Intro Part 2
zhlédnutí 3,4KPřed 6 lety
Digital Communications: Random Processes Intro Part 2
Digital Communications: Random Processes Intro Part 1
zhlédnutí 11KPřed 6 lety
Digital Communications: Random Processes Intro Part 1
Digital Communications - Kalman Filter - Part 2
zhlédnutí 861Před 7 lety
Digital Communications - Kalman Filter - Part 2
Digital Communications - Kalman Filter - Part 1
zhlédnutí 831Před 7 lety
Digital Communications - Kalman Filter - Part 1
Circuits 1 - Source Transformations - Intro
zhlédnutí 9KPřed 7 lety
Circuits 1 - Source Transformations - Intro
Robotics - Inverse Kinematics - Example
zhlédnutí 122KPřed 7 lety
Robotics - Inverse Kinematics - Example
Circuits 1 - Current Dividers - Intro
zhlédnutí 13KPřed 7 lety
Circuits 1 - Current Dividers - Intro
Digital Communications - Filter Relationships - Part 3
zhlédnutí 3,4KPřed 7 lety
Digital Communications - Filter Relationships - Part 3
Digital Communications - DJP Algorithm - Intro
zhlédnutí 631Před 7 lety
Digital Communications - DJP Algorithm - Intro
Digital Communications - Dijkstra Algorithm - Intro
zhlédnutí 417Před 7 lety
Digital Communications - Dijkstra Algorithm - Intro
Digital Communications - Ethernet Protocol - Intro
zhlédnutí 436Před 7 lety
Digital Communications - Ethernet Protocol - Intro
Digital Communications - Aloha Protocol - Intro
zhlédnutí 3,8KPřed 7 lety
Digital Communications - Aloha Protocol - Intro

Komentáře

  • @philosofsky123
    @philosofsky123 Před 8 hodinami

    Volume warning: the first 5 seconds or so are super loud 🔊🔊🔊

  • @ivegotpetercriss
    @ivegotpetercriss Před 3 dny

    I watched these videos back when I was going through undergrad and back again because I have to take my FE. Thanks again!

  • @AnguSheA
    @AnguSheA Před 5 dny

    Looks like a good video but I can’t take the marker sound. You might want to edit it out.

  • @philsey2783
    @philsey2783 Před 15 dny

    bro the sounds from writing on that glass board or whatever makes me feel weird💀

  • @Lexyvil
    @Lexyvil Před 20 dny

    I'm trying to understand how we get a negative from changing 1/200 to 200, if anyone can help me with that, at 4:10 EDIT: All good! I reviewed the log rules, and it makes sense now. For anyone wondering: 1/200 equals 200^-1, and exponents (in this case, the value of -1) can be pulled out of logs. This was a very helpful video, wish my prof explained it like that! Thanks.

  • @spamfilter2966
    @spamfilter2966 Před 23 dny

    bro i fucking love you

  • @philliphollingsworth6601

    Would UConn HKN consider doing an example for a Delta-Y, Unbalanced Load, with Line Impedances, NOT converting the source to a Y equivalent, calculating the source and line currents, power delivered, and power consumed.

  • @mmtatlas4705
    @mmtatlas4705 Před měsícem

    thank you

  • @ramyadakbari2538
    @ramyadakbari2538 Před měsícem

    brilliant

  • @samirrasulov4781
    @samirrasulov4781 Před měsícem

    Actually it is the solution of the problem. I cannot call this an explanation.

  • @mia_in_ch
    @mia_in_ch Před měsícem

    still very actual, thanks!

  • @joeLotfy
    @joeLotfy Před měsícem

    yup, that's it, im failing this final.

  • @The_Handy_Man
    @The_Handy_Man Před měsícem

    Finally understand this for my exam. Thank you!

  • @seasnek7024
    @seasnek7024 Před měsícem

    The DH convention for prismatic joint 2 should have Z2 pointing along the direction of the manipulator (as shown), however X2 and Y2 should've been swapped. Do the right-hand rule and with DH convention and you'll see this.

  • @bilsid
    @bilsid Před měsícem

    Your -45 and -90 slope looks the same.

  • @isaacaguirre1881
    @isaacaguirre1881 Před 2 měsíci

    ok but what is its in the form for example 1-s/1+s, how does the -1 effect it

    • @bilsid
      @bilsid Před měsícem

      Gain plot would be the same. phase plot will be different: +pole will behave as a -very zero and vice versa

  • @lunden6997
    @lunden6997 Před 2 měsíci

    When solving for for Norton, when the current flows around from B and onwards, is it not possible for the current to flow upwards throw the 40 ohm resistor. All three branches have resistors?

  • @stevematson4808
    @stevematson4808 Před 2 měsíci

    Is there a difference between the analod discovery packags offered from diligent? What package should I get to perform these tests? Awesome video btw. Much more informative than the rest on this subject.

  • @sucitrisentam3005
    @sucitrisentam3005 Před 2 měsíci

    15:00

  • @nanobomb0402
    @nanobomb0402 Před 2 měsíci

    brother single-handedly saved my mechatronics exam

  • @faisalat2317
    @faisalat2317 Před 2 měsíci

    ضاع عمري وانا ادرس عند الدويش

  • @waroftheworlds2008
    @waroftheworlds2008 Před 2 měsíci

    4:30 so on passive elements (RLC) the passive sign convention is always positive with this method? and it's only the sources that you decide on positive or negative?

    • @UConnHKN
      @UConnHKN Před 2 měsíci

      The sign convention is just that, a convention. The easiest thing to do is the write the positive and negative signs on the passive elements at the beginning of the problem and them as you traverse the KVL loop, use the sign for the element that you encounter first. ~Andrew F

  • @fourak1
    @fourak1 Před 2 měsíci

    Best ever one @_@

  • @sadpotato5111
    @sadpotato5111 Před 3 měsíci

    thank you so much, great video

  • @fmcetin
    @fmcetin Před 3 měsíci

    I LOVE YOU YOU ARE THE MAN BEST BODE PLOT VIDEO EVER

  • @zlu8758
    @zlu8758 Před 3 měsíci

    i just got 99% on my test thanks

  • @mortezazamani3570
    @mortezazamani3570 Před 3 měsíci

    god bless u

  • @iiUmBraL
    @iiUmBraL Před 3 měsíci

    This is fantastic I'm trying to use it except our fucking professor has an unfactorable quadratic in the numerator how the hell do I plot this... It's 100(s^2+4s+9)/40(s/40 +1)

  • @h1burner856
    @h1burner856 Před 3 měsíci

    absolute legend, I finally found someone that can explain bode plots so clearly big up my man

  • @iyansaulon
    @iyansaulon Před 3 měsíci

    Is capacitor included in solving problems?

    • @UConnHKN
      @UConnHKN Před 2 měsíci

      Capacitors are generally used to remove the DC part of an input, and thus are left out of the calculations. ~Andrew F

  • @mofasa5833
    @mofasa5833 Před 3 měsíci

    where is the second video? thanks for the first one btw

  • @Okugo
    @Okugo Před 4 měsíci

    Bro clutched up my robotics midterm 🎉

  • @bmebri1
    @bmebri1 Před 4 měsíci

    1985 called: they want their microphone back.

  • @michaelhall5801
    @michaelhall5801 Před 4 měsíci

    It always blows my mind how my profs can make something thats actually so simple seem so complicated. Thank you so much man 🙏

  • @lpstiatv8305
    @lpstiatv8305 Před 4 měsíci

    This guy is so sassy with it- I love this tutorial!

  • @nicolasaq523
    @nicolasaq523 Před 4 měsíci

    8 years later and you're still saving lives, much appreciated.

    • @UConnHKN
      @UConnHKN Před 2 měsíci

      It's my pleasure <3 ~Andrew F

  • @ashtontaylor440
    @ashtontaylor440 Před 4 měsíci

    UR GOATED

  • @chassenk412
    @chassenk412 Před 5 měsíci

    Great

  • @philipbecker3332
    @philipbecker3332 Před 5 měsíci

    Very clear THANK YOU!!!

  • @thevaibhavbokare
    @thevaibhavbokare Před 5 měsíci

    Can you sent MATLAB code for signal space analysis

  • @manethdulshan9449
    @manethdulshan9449 Před 5 měsíci

    loved it Very first time learning Convolution theory Felt so nice and time went without even noticing

  • @iyrg
    @iyrg Před 5 měsíci

    GOD SENT YOU AS A GIFT TO US

  • @zukofire6424
    @zukofire6424 Před 5 měsíci

    I don't get how Vo is expressed as the sum of the preceding voltages

  • @zukofire6424
    @zukofire6424 Před 5 měsíci

    I find Isc =( -12/13)e-3

  • @abdiz325
    @abdiz325 Před 5 měsíci

    Damn this is the best video out there

  • @rodericksibelius8472
    @rodericksibelius8472 Před 5 měsíci

    One thing about learning circuits is that we rely too much on mathematics, WITHOUT the real world 'simulation' of it to see the dynamic symphony of the components behavior contribute to the circuit, THE PHYSICS CONCEPT, QUALITATIVE UNDERSTANDING OF IT, flow of electrons, building and collapsing of voltages and magnetic fields, and just using simple algebra to solve it without complex mind boggling 'DIFFERENTIAL EQUATIONS JARGON calculus concepts. I am a VISUAL LEARNER.

    • @dux3644
      @dux3644 Před 5 měsíci

      I mean these mathematics does describe all those physics concepts you are talking about but we mortals can't really interprete them in their full potential lol even if I don't fully get it I find it super cool to be able to represent a system like that in such compact way, math can be beautiful too

  • @zukofire6424
    @zukofire6424 Před 5 měsíci

    Thanks all the videos help!

  • @Bruno-hp4ni
    @Bruno-hp4ni Před 6 měsíci

    Is he writing in reverse?

  • @ivankonestabo6767
    @ivankonestabo6767 Před 6 měsíci

    How come matlab/octave shows different plots when we write for example (1+s/20)**2 compared to (1+s/20)(1+s/20) in the poles section of the fraction?

  • @IcRDlayout
    @IcRDlayout Před 6 měsíci

    Much appreciated Sir 🫡 🤭 Use matrix to solve it for 30 secs