Showing posts with label SETI. Show all posts
Showing posts with label SETI. Show all posts

20130611

Astronomy in-class activity: SETI and BETI

Astronomy 210 In-class activity 24 v.13.06.11, fall semester 2013
Cuesta College, San Luis Obispo, CA

Students find their assigned groups of three to four students, and work cooperatively on an in-class activity worksheet to discuss how messages are anticoded, and experience practical issues with incommensurability barrier by attempting to analyze content in a fictitious message from an extraterrestrial advanced technological civilization.

Start out with going over the original Arecibo message (and presumptive crop circle reply in Chilbolton, England, 2001) in a whole-class discussion. Point out to or ask students about the key features of these messages: counting (binary); height and population of inhabitants; schematic representation of planetary systems and communication devices (radio dishes and supposed crop-crushing apparatus).


With these clues, students then start working in their groups.



This is a truncated version of a much longer in-class activity which also involves counting systems and arithmetic operations used in anticoded messages.

20090927

Central Coast Astronomical Society monthly meeting: NASA Kepler Misssion

090926-1110782
http://www.flickr.com/photos/waiferx/3964831259/
Originally uploaded by Waifer X

Dr. Laurance Doyle, SETI principal investigator and NASA Kepler Space Telescope mission science team member, giving a presentation on the "NASA Kepler Mission: Detection of (Tatooine-Like) Habitable Planets Around Double Stars" at California Polytechnic University, San Luis Obispo, CA, September 26, 2009, hosted by the Central Coast Astronomical Society. Photo by Cuesta College Physical Sciences Division instructor Dr. Patrick M. Len.

20090407

Found physics: Speculative Enceladus visualizations

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Originally uploaded by Waifer X

"Surface of Enceladus (Speculative)" (hoarfrost on a car trunk, Atascadero, CA). Photo by Cuesta College Physical Sciences Division instruction Dr. Patrick M. Len.


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http://www.flickr.com/photos/waiferx/3421648887/
Originally uploaded by Waifer X

"Enceladan Life (Speculative)" (live crab at Pier 46 seafood market, Templeton, CA). Photo by Cuesta College Physical Sciences Division instruction Dr. Patrick M. Len.

20081208

Extraterrestrial hypothesis tryptich

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http://www.flickr.com/photos/waiferx/3087116819/
Originally uploaded by Waifer X

081206-1060910-invert
http://www.flickr.com/photos/waiferx/3087119633/
Originally uploaded by Waifer X


081206-1060911-invert
http://www.flickr.com/photos/waiferx/3088597420/
Originally uploaded by Waifer X

Dramatizations of the original 1974 Arecibo message, the Drake equation, and the purported 2001 Chibolton crop circle "reply."

20080607

Astronomy clicker question: alien math and the incommensurability problem

Astronomy 10, Spring Semester 2008
Cuesta College, San Luis Obispo, CA

Astronomy 10 learning goal F.3

Students were asked the following clicker question (Classroom Performance System, einstruction.com) near the end of their learning cycle (and just after an in-class activity on BETI).

[0.3 points.] What is the answer to the anticoded message shown above?
(A) 9.
(B) 23.
(C) 25.
(D) 120.

Correct answer: (B)

This is based on the octal counting system and mathematical operators defined in the presumptive Arcturus Project alien message.

The inner curved brackets represent the multiplication operator acting on 3 and 5, and the outer straight brackets represent the next order addition operator acting on 8 and 15, resulting in 23, as demonstrated in the previous in-class activity on BETI.

Student responses
Section 4160
(A) : 2 students
(B) : 5 students
(C) : 9 students
(D) : 13 students

Section 5166
(A) : 5 students
(B) : 30 students
(C) : 2 students
(D) : 8 students

20080606

Astronomy in-class activity: SETI and BETI

Astronomy 10 In-class activity 30 v.06.12.15, spring semester 2008
Cuesta College, San Luis Obispo, CA

Astronomy 10 learning goal F.3

Students find their assigned groups of three to four students, and work cooperatively on an in-class activity worksheet to discuss how messages are encoded, and the problems that may arise from the incommensurability barrier.

Start out with going over the original Arecibo message (and presumptive crop circle reply in Chilbolton, England, 2001) in a whole-class discussion. Point out to or ask students about the key features of these messages: counting (binary); height and population of inhabitants; schematic representation of planetary systems and communication devices (radio dishes and supposed crop-crushing apparatus).


Then go over the first two pages of both the Cosmic Call message and the presumptive message received by the Arcturus Project. Note the counting schemes (binary, decimal, octal), and the symbols for equality, inequality, and syntax for basic arithmetic operations (addition, subtraction, multiplication, and division).


With these clues, students then start working in their groups.






Related links:

20070802

Crop circle signs of intelligence


Driver comes a cropper in police chase, metro.co.uk
June 25, 2007

Physics 8A learning goal F.3

A driver allegedly under the influence of cocaine, pursued by four police cars in a corn field in the Netherlands. Would this pattern be interpreted as a purposeful sign of intelligence by extraterrestrials?