This post contains some thoughts on Technology Enhanced
Learning, based on my own experience and experience of other Engineering
Education Researchers, five PPt-pdf presentations: introduction to EdTech, best
practices and tips for Blended Course development in Flipped Classroom format,
organization of Assessments and Screencasting. Cartoons used in these
presentations are Copyright Controlled and can’t be re-used without permission
of the Copyright Owner.
Monday, 2 December 2013
Wednesday, 9 January 2013
Wednesday, 2 January 2013
Sunday, 23 December 2012
Wyższa Szkoła Rokendroła - Lecture 2: songs with whistling
01 Retropuls Jingle
02 Wyższa Szkoła Rokendroła Jingle
03 Trailer
3.1 Mitch
Miller & His Orchestra – March From The River Kwai 1958
3.2 Les
Baxter & His Orchestra – The Poor
People Of Paris 1956
3.3 Victor
Young & His Singing Strings – The High And The Mighty 1954
3.4 Nelson
Riddle – Theme From The Proud Ones 1956
Trailer
3.5 Pat
Boone – Love Letters In The Sand 1957
3.6 Guy
Mitchell – Singing The Blues 1956
3.7 Perry Como – Magic Moments 1958
3.8 Pat
Boone – I’ll See You In My Dreams 1962
Trailer
3.9 The
Shadows – Five Hundred Miles 1965
3.10 The Outlaws – Tune For The Short Cowboy
1961
3.11 John Barry – Snap And Whistle 1959
3.12 Max Wall – Take It Easy 1951
Trailer
3.13 Gerry & The Pacemakers – Dreams 1965
3.14 New Vaudeville Band – Winchester Cathedral
1966
3.15 Whistling Jack Smith – I Was Kaiser Bill’s
Bateman 1967
Trailer
3.16 Dick Hyman Trio – Moritat 1956
3.17 Ennio Morricone – Fist Full Of Dollars
1964
3.18 Ennio Morricone – For A Few Dollars Pt.2
1970
3.19 Ennio Morricone – Once Upon A Time In The
West -Farewell To Cheyenne 1969
Bonus tracks
04 Bing Crosby – White
Christmas 1942
05 Sam Donahue &
His Orchestra – The Whistler 1947
06 Louis Prima –
Whistle Stop 1956
07 Don Robertson – The
Happy Whistler 1956
08 Andy Griffith – The
Fishin’ Hole 1961
09 Elson Smith –
Whistler’s Twist 1961
10 Gene Pitney – Only
Love Can Break A Heart 1962
11 The Krewkats –
Whistle Down The Wind 1963
12 The Lovin’ Spoonful
– Daydream 1966
13 Roy Orbison – Here
Comes The Rain, Baby 1967
14 Otis Redding –
(Sittin’ On) The Dock Of The Bay 1968
Wednesday, 19 December 2012
Wyższa Szkoła Rokendroła - Lecture 1: songs with burp, fart, etc.
01. Retropuls Jingle
02. Wyższa Szkoła
Rokendroła Jingle
Trailer
2.1 Peter
Sellers & The Goons – The Raspberry Song 1978
2.2 Alfred
Newman – It’s A Gas 1963
2.3 Rose
& The Arrangements – Cockroach That Ate Cincinnati 1974
Trailer
2.4 The
Empallos – Hiccup 1958
2.5 Spike
Jones & His City Slickers – Cocktails For Two 1945
Trailer
2.6 The
Vikings – Nicotine 1963
2.7 Spike
Jones – Sneezin’ Bee 1957
Trailer
2.8 Bob
Bunny – The Joker 1957
2.9 Jim
Backus & Friend – Delicious! 1958
2.10 The Epics – On The Rocks 1964
Trailer
2.11 Elvis Presley – Are You Lonesome Tonight (with
laughing) 1969
2.12 St. Nick – Jingle Bells (Laughing All The
Way) 1981
2.13 Charles Penrose – The Laughing Policeman
1922
Trailer
2.14 Billy Ward & His Dominoes – The Bells 1953
2.15 Rolf Harris – I’ve Lost My Mummy 1963
Trailer
2.16 John & Jackie – Little Girl 1958
2.17 Ian Whitcomb – You Turn Me On 1965
2.18 Jane Birkin & Serge Gainsbourg – Je
T’Aime… Moi Non Plus 1969
Bonus tracks
03. The Ikettes
(laughing by Tina Turner) – No Bail In This Jail 1963
04. Jimmy Harrison –
Hiccups 1959
05. Spike Jones –
Wyatt Earp Makes Me Burp 1957
06. Chaino –
Ceremonial Feast Dance 1959
07. The Crew – The
Jaguar Hunt 196x
08. Paul Peek – The Riddle
Of The Papahoos 1963
09. The Nite Cats –
Jungle 1962
10. The Wildmen – King
Of The Jungle 196x
11. Johnny Clark &
The Four Playboys – Jungle Stomp 1963
12. The Cherokees –
Uprising 196x
13. Bob Ridgley – She
Was A Mau Mau 196x
14. Chaino – Jungle
Chase 1959
Monday, 10 December 2012
Introduction to CT
ppt Presentation
screencasts
IN6 Relationship between instantaneous power and energy absorbed/supplied
IN7a,b Relationship between instantaneous energy and power
IN11 Relationship between given instantaneous voltage and current and energy supplied/absorbed
IN13 Calculation of energy absorbed for the given instantaneous current and i-u relationship
IN18 Calculation of charge for the given current
screencasts
IN6 Relationship between instantaneous power and energy absorbed/supplied
IN7a,b Relationship between instantaneous energy and power
IN11 Relationship between given instantaneous voltage and current and energy supplied/absorbed
IN13 Calculation of energy absorbed for the given instantaneous current and i-u relationship
IN18 Calculation of charge for the given current
Tuesday, 13 November 2012
DC1 Introduction to DC Analysis
video-podcast DC1.3
screencasts
DC1.1b Calculation of energy dissipated by a resistor, for the given current waveform
DC1.2a,b Energy supplied/absorbed by a source that satisfies active sign convention
DC1.3 Relationship between power and voltage
DC1.6b Bridge circuit, delta-wye transformation
DC1.7a’ Sizing resistance in a simple circuit - different approaches
DC1.9 Parameter identification, PSpice Schematics Parametric Analysis
DC1.10 Sizing of resistance for the given design specification
DC1.14,15,15’ Relationship between a SISO resistive circuit excitation and the response: current or power
DC1.19 Simple circuit analysis: on-diagram approach and superposition theorem approach
screencasts
DC1.1b Calculation of energy dissipated by a resistor, for the given current waveform
DC1.2a,b Energy supplied/absorbed by a source that satisfies active sign convention
DC1.3 Relationship between power and voltage
DC1.6b Bridge circuit, delta-wye transformation
DC1.7a’ Sizing resistance in a simple circuit - different approaches
DC1.9 Parameter identification, PSpice Schematics Parametric Analysis
DC1.10 Sizing of resistance for the given design specification
DC1.14,15,15’ Relationship between a SISO resistive circuit excitation and the response: current or power
DC1.19 Simple circuit analysis: on-diagram approach and superposition theorem approach
Sunday, 11 November 2012
DC2 Nodal Analysis

ppt Presentation
screencasts
DC2.1 Simple circuit analysis: nodal approach and superposition approach
DC2.4 Simple circuit analysis - nodal approach versus source transformation approach
DC2.5 Analysis of a circuit built of two parts connected by a single branch
DC2.8 Formulation of Nodal Equations
DC2.10 Calculation of a source power: designation whether supplied or absorbed, use of superposition theorem
DC2.10a Equivalent resistance, current divider
DC2.21,22 Identification of a source value for the specified power, PSpice DC Sweep
screencasts
DC2.1 Simple circuit analysis: nodal approach and superposition approach
DC2.4 Simple circuit analysis - nodal approach versus source transformation approach
DC2.5 Analysis of a circuit built of two parts connected by a single branch
DC2.8 Formulation of Nodal Equations
DC2.10 Calculation of a source power: designation whether supplied or absorbed, use of superposition theorem
DC2.10a Equivalent resistance, current divider
DC2.21,22 Identification of a source value for the specified power, PSpice DC Sweep
Saturday, 10 November 2012
DC3 Passive/Active 2-terminal Circuit
video-podcast DC3.3
screencasts
DC3.1 Power dissipated in series/parallel combination of resistors
DC3.2c,d Sizing of supply current for the specified "Dissipated Power (Wattage) Rating" of resistors
DC3.7,8 Range extension of a Voltmeter/Ammeter
DC3.9 Sizing of supply voltage/current for specified wattage ratings of two resistors connected in parallel/series
DC3.10 Equivalent resistance, equivalent circuits
DC3.12 Limiting a battery charging current by a resistance connected in series
DC3.13a,b Thevenin/Norton equivalent of battery packs
DC3.17b Use of source transformation to find the Norton equivalent of a complex circuit
DC3.18a Thevenin equivalent of a complex circuit
DC3.22 Finding of Norton equivalent of a black box circuit, based on measurements at its terminals
DC3.25 Use of a voltage source to build a current source
screencasts
DC3.1 Power dissipated in series/parallel combination of resistors
DC3.2c,d Sizing of supply current for the specified "Dissipated Power (Wattage) Rating" of resistors
DC3.7,8 Range extension of a Voltmeter/Ammeter
DC3.9 Sizing of supply voltage/current for specified wattage ratings of two resistors connected in parallel/series
DC3.10 Equivalent resistance, equivalent circuits
DC3.12 Limiting a battery charging current by a resistance connected in series
DC3.13a,b Thevenin/Norton equivalent of battery packs
DC3.17b Use of source transformation to find the Norton equivalent of a complex circuit
DC3.18a Thevenin equivalent of a complex circuit
DC3.22 Finding of Norton equivalent of a black box circuit, based on measurements at its terminals
DC3.25 Use of a voltage source to build a current source
Monday, 1 October 2012
DC4 Two Interconected Circuits
video-podcast DC4.2
screencasts
DC4.2b Application of Substitution Theorem to calculation of power transferred between two (sub)circuits
DC4.9 Calculation of the load resistance for the given efficiency of the system
DC4.10 Maximum Power Transfer Theorem. Finding of the minimum power transferred, for the given range of a load resistance
DC4.13 Calculation of a resistance, being a part of a complex system, at the maximum power transfer condition
DC4.24 Battery packs operating at the maximum power transfer condition
screencasts
DC4.2b Application of Substitution Theorem to calculation of power transferred between two (sub)circuits
DC4.9 Calculation of the load resistance for the given efficiency of the system
DC4.10 Maximum Power Transfer Theorem. Finding of the minimum power transferred, for the given range of a load resistance
DC4.13 Calculation of a resistance, being a part of a complex system, at the maximum power transfer condition
DC4.24 Battery packs operating at the maximum power transfer condition
Saturday, 29 September 2012
Thursday, 20 September 2012
Wednesday, 5 September 2012
Thursday, 30 August 2012
DC8 Nonlinear Circuits 1
video-podcast DC8.2
screencasts
DC8.10 Finding (graphically) the total I-U relationship of two PWL nonlinear elements connected in series/parallel
DC8.11 Analysis of a circuit built of parallel/series combination of nonlinear elements
DC8.12 Design of a circuit built of k LEDs connected in series
DC8.15 Analysis of a bridge circuit with nonlinear element connected into one arm
screencasts
DC8.10 Finding (graphically) the total I-U relationship of two PWL nonlinear elements connected in series/parallel
DC8.11 Analysis of a circuit built of parallel/series combination of nonlinear elements
DC8.12 Design of a circuit built of k LEDs connected in series
DC8.15 Analysis of a bridge circuit with nonlinear element connected into one arm
Friday, 10 August 2012
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