russel.org.uk Report : Visit Site


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    Server:Apache/2.4.33 (Debia...

    The main IP address: 87.127.116.10,Your server United Kingdom,Crewe ISP:ADSL Endpoints Nat Conections Only  TLD:uk CountryCode:GB

    The description :russel winder's website...

    This report updates in 08-Jul-2018

Created Date:2001-05-31
Changed Date:2013-03-24

Technical data of the russel.org.uk


Geo IP provides you such as latitude, longitude and ISP (Internet Service Provider) etc. informations. Our GeoIP service found where is host russel.org.uk. Currently, hosted in United Kingdom and its service provider is ADSL Endpoints Nat Conections Only .

Latitude: 53.097869873047
Longitude: -2.4416100978851
Country: United Kingdom (GB)
City: Crewe
Region: England
ISP: ADSL Endpoints Nat Conections Only

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HTTP Header Analysis


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Content-Length:16689
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Keep-Alive:timeout=5, max=100
Server:Apache/2.4.33 (Debian)
Last-Modified:Mon, 25 Sep 2017 06:15:56 GMT
Connection:Keep-Alive
ETag:"c2fe-559fd7ddf2285-gzip"
Date:Sat, 07 Jul 2018 18:28:36 GMT
Content-Type:text/html

DNS

soa:ns2.mythic-beasts.com. hostmaster.mythic-beasts.com. 2010000321 21600 7200 604800 3600
ns:ns1.mythic-beasts.com.
ns2.mythic-beasts.com.
ipv4:IP:87.127.116.10
ASN:8468
OWNER:ENTANET ENTANET International Limited, GB
Country:GB
mx:MX preference = 5, mail exchanger = dimen.russel.org.uk.

HtmlToText

learning programming russel winder 2017-07-22 14:50 on twitter recently, someone asked me: what was your xp picking up languages and paradigms? how did you discover the value of new concepts you decided to learn? i wrote an email in reply. it got a bit long for an email, and it began to look like a blog post. so i copy and pasted the text and worked on it till this blog post resulted. i think the most important thing for me in learning programming was that i was a theoretical physicist and scientist bringing a scientific method approach to the whole activity. i first learned fortran programming using punch cards sent off to a computer with a one week turnaround. this forces you to carefully mentally execute your code. this is i think a skill fewer and fewer people practice. i then moved on to having direct access to job submission, but still using fortran on cards, but now with a one day turnaround. in effect no change: in terms of development a week and a day leave you with the lack of continuity of thinking. i did though learn about abstract data types as a concept around then. i mock up this idea in fortran for my code. ok in hindsight i was hacking the language to achieve a goal the language was not designed for, and yet my code was easier to evolve with those constructs for the uses i was making of them. other people programming around me were still working with the standard fortran model and doing much more debugging and getting wrong results they didn’t know were wrong. around this time i did some work that involved: accessing mainframe codes using editor and job control submitted for day turnaround batch via paper tape. yuk. i grumbled so much and pointed at a minicomputer in the room so that; using a rewrite of the fortran code in basic on aforementioned local mini-computer. still paper tape but the turnaround time was fabulous. i had to learn the magic skills of very thin sticky tape to block up holes without blocking the fast tape reader and a hole punch to put corrections in. so then we are on to the terminal access to medium and big local and remote computers. the crucial thing here is quasi-instant turnaround. actually still batch job submission, but it was all on the machines so you could track the job and thus schedule your time. furthermore you could have one job waiting and work on preparing another. it was around this time i got obsessed with program development process and tooling. and learning the subtleties of the only error message ibm machines ever give: 0c4. next stage was learning new languages. first stop algol 68. this was an eye opener, and a revelation. everything i had been tinkering with using fortran suddenly became easy. pascal was clearly a failure in comparison to algol 68 but it had to be used because it had to be used. except fortran was still the tool. along with schoonership and reduce. also a couple of assembly language courses, to find out how computer hardware actually worked. however i then switched career and taught myself c. it was all about hardware, mostly because i was doing systems programming, but c was so much better than assembly language for this. and unix 6 on pdp-11. joyous. with the move to vax-11 750 things got interesting: octal → hexadecimal. but it was all about making hardware work, but using nice, elegant, understandable c code. i also got involved in some ui and quasi-ide research work. this was right at the start of the graphical display revolution so everything was actually quite simple but revolutionary. and very exciting. also learned prolog which was an eye opener: script submitted to compute engine, a whole new way of thinking. also worth noting that editing and executing code instant turnaround, no batch any more. bugs instantly available. i stopped being careful about carefully mentally executing my code. this was an error. i try harder since then, but the instant turnaround (which is today even more instant) made development time longer because of all the trivial errors. then the academic phase teaching in historical order: fortran, pascal, c++, scheme, miranda (which with krc led to haskell), fortran, prolog, ada, and java. the theme here is having to learn new paradigms of computation and teach them professionally to others. also i was researching psychology of programming, ui, and parallel programming and programming languages. i was part of teams inventing languages. mostly oo as i was in the oo not functional camp during the great oo vs fp war of the 1980s. along with the plethora of languages and computational models, and always present, was my obsession with build automation, and scientific method as an approach to debugging. 1979 was a revolutionary year for me as i found out about and was able to use make. till then i have been tinkering creating my own scripts for automating build. make changed my life. for the last 20 years it has just been "more of the same". the languages change (and mostly improve), ide and editors change (and mostly improve), but my mental structures for dealing with it all have not really changed. yes the facts and beliefs evolve, but the meta-facts and meta-beliefs have stayed fairly constant. yes, i know that people cannot reason about their own thinking, but i have not had any serious events of crisis of belief about programming and software development in the last 20 years. the dimensions are simplicity, or at least understandability, symmetry, or at least understandable lack of it, and performance, or understanding lack of it. i am in the "oo failed and fp failed but the amalgam of oo and fp has moved us forward massively" camp. for this we have to thank scala for providing the bridge in the early 2000s. also c++ moving from oo to generic as it’s label, and that go and rust have eschewed classes but are still object-based languages. having a knowledge of processor architectures and executions up to high level programming, with a knowledge of many different paradigms of software execution is for me the core, along with a demand for scientific method and not guesswork. marionet first meeting russel winder 2017-01-12 08:00 entirely by accident (a retweet of something that i just happened to see) i found out about the first meeting of a new epsrc network, marionet (manycore research, innovation, and opportunities network). the meeting was yesterday (a day i had free) at imperial college, a place i can get to fairly easily – even during a tube a train strike. so i signed up and went along. the opening keynote for the day was by steve furber and was rather good. he started with a history (by decades) of computing in manchester, uk. this turns out to be an interesting list of firsts: baby 1948, the first stored program machine. 1950s, the mark 1, the first real computer. 1960s, atlas, the first virtual memory computer. 1970s, mu5, not so much a first per se, but the basis of the workhorse computer for national and local government for a long while. 1980s, the dataflow machine, the first dataflow hardware machine – in the end not a success but led to all the software dataflow architectures so common today. 1990s, amulet, the beginning of the arm core era. 2000s, spinnaker, the beginning of real-time brain modelling, the beginning of small core, tightly bound cpu and memory, emphasis on routing small packets. 2010s spinnaker 2, more of the same but totally different internals. a couple of asides made the history fascinating: it was the baby machine that got alan turing to be in manchester, he didn’t write any programs for the machine but he did some of the documentation. he actually wrote some papers predicting the future of computers including that computers would have gigabytes of memory within 60 years, and interesting prediction in 1948 with baby having a few hundred bytes. ibm bought the patents on virtual memory from manchester university for far too little money. this viewpoint on the history of computing contrasts massively to the usual usa

URL analysis for russel.org.uk


https://www.russel.org.uk/posts/2017/201701050352_onturningpointsinlife.html
https://www.russel.org.uk/presentations/devoxxuk2016_theriseandriseofdataflowinthejavaverse.pdf
https://www.russel.org.uk/posts/2016/201608111610_testingpropositions.html
https://www.russel.org.uk/stories/publishing.html
https://www.russel.org.uk/stories/softwareiaminvolvedwith.html
https://www.russel.org.uk/stories/presentationsbyme.html
https://www.russel.org.uk/posts/2016/201608201600_adhocclustersofraspberrypis.html
https://www.russel.org.uk/stories/short-biography.html
https://www.russel.org.uk/cv.pdf
https://www.russel.org.uk/stories/softwarebyme.html
https://www.russel.org.uk/index-21.html
https://www.russel.org.uk/stories/cv.html
https://www.russel.org.uk/posts/2017/201707221450_learningprogramming.html
https://www.russel.org.uk/posts/2016/201607081815_supercomputerinacase.html
https://www.russel.org.uk/stories/contact.html
epsrc.ac.uk
sussex.ac.uk
research.manchester.ac.uk
manycire.org.uk
metoffice.gov.uk
cs.ucl.ac.uk

Whois Information


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Domain name:
russel.org.uk

Registrant:
Russel Winder

Registrant type:
UK Individual

Registrant's address:
41 Buckmaster Road
London
London
SW11 1EN
United Kingdom

Data validation:
Nominet was able to match the registrant's name and address against a 3rd party data source on 10-Dec-2012

Registrar:
Mythic Beasts Limited [Tag = MYTHIC-BEASTS]
URL: http://www.mythic-beasts.com

Relevant dates:
Registered on: 31-May-2001
Expiry date: 31-May-2022
Last updated: 24-Mar-2013

Registration status:
Registered until expiry date.

Name servers:
ns1.mythic-beasts.com
ns2.mythic-beasts.com

WHOIS lookup made at 20:48:43 06-Mar-2018

--
This WHOIS information is provided for free by Nominet UK the central registry
for .uk domain names. This information and the .uk WHOIS are:

Copyright Nominet UK 1996 - 2018.

You may not access the .uk WHOIS or use any data from it except as permitted
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  REFERRER http://www.nominet.org.uk

  REGISTRAR Nominet UK

SERVERS

  SERVER uk.whois-servers.net

  ARGS russel.org.uk

  PORT 43

  TYPE domain

OWNER

  ORGANIZATION Russel Winder

TYPE
UK Individual

ADDRESS
41 Buckmaster Road
London
London
SW11 1EN
United Kingdom
Data validation:
Nominet was able to match the registrant's name and address against a 3rd party data source on 10-Dec-2012

DOMAIN

  SPONSOR Mythic Beasts Limited [Tag = MYTHIC-BEASTS]

  CREATED 2001-05-31

  CHANGED 2013-03-24

STATUS
Registered until expiry date.

NSERVER

  NS1.MYTHIC-BEASTS.COM 45.33.127.156

  NS2.MYTHIC-BEASTS.COM 93.93.128.67

  NAME russel.org.uk

DISCLAIMER
This WHOIS information is provided for free by Nominet UK the central registry
for .uk domain names. This information and the .uk WHOIS are:
Copyright Nominet UK 1996 - 2018.
You may not access the .uk WHOIS or use any data from it except as permitted
by the terms of use available in full at http://www.nominet.uk/whoisterms,
which includes restrictions on: (A) use of the data for advertising, or its
repackaging, recompilation, redistribution or reuse (B) obscuring, removing
or hiding any or all of this notice and (C) exceeding query rate or volume
limits. The data is provided on an 'as-is' basis and may lag behind the
register. Access may be withdrawn or restricted at any time.

  REGISTERED yes

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