Showing posts with label JFF. Show all posts
Showing posts with label JFF. Show all posts

Monday, March 5, 2012

Just for Fun: Problem 3

It's 6am and thirty lockers stand in a long lovely row, closed and neat, ready for the opening of another school day.

  • The first student arrives and, what the heck, opens every locker! 
  • The second student arrives and changes the position of every second locker (i.e. lockers 2, 4, 6, 8, etc all got closed).
  • The third student arrives and changes the position of every third locker (from open to closed or vise versa)
  • The fourth student changes the position of every fourth locker...
  • This continues until the 30th student arrives and changes the position of locker #30.

What is the final configuration of the lockers after all 30 students have passed by?

Tuesday, February 28, 2012

Calendar of Best Fit

All my life I've operated under the assumption that a leap year occurs once every four years as our way to account for calendar discrepancies... a way of handling the actual length of a year: 365.25 days.

Vicky Rauch enlightened me a little today. In reality, the length of the year is closer to 365.2421897 days, and that's if you are measuring the mean distance between equinoxes, which is probably a good idea so that seasons stay intact. With this figure in mind, it has been calculated that we only need to have 97 leap years every 400 years! So, that's what we do. We, in fact, skip the leap year at the turn of the century 3 out of every 4 times. So, 2000 WAS a leap year, but 2100, 2200, and 2300 will not be. Cool.

But, here's a question, because surely even this system will not be entirely accurate: How long will it take before the calendar will be off by a full day, despite our leap year alterations? And for all you scientists out there, the tropical year (measurement based upon equinoxes) varies slightly from the sidereal year (measurement based upon earth's orbit in relation to fixed stars). How would the calendar change if it was based on the sidereal year (365.256363004 days)? And dare I even mention that the tropical year varies slowly as the years progress? The calendar is such an easy thing to take for granted!

Some fascinating classroom discussion and fabulous mathematics work might just ensue on Wednesday. Happy Leap Day!

Wednesday, February 15, 2012

Just for Fun: Problem 2

How do you find the center of the circumscribed sphere of any triangular pyramid (not necessarily regular)?

Thursday, February 9, 2012

Just for Fun: Problem 1

Because math is fun, and sometimes I like to work on interesting problems. 
AND because I see so many UNinteresting problems.
Just For Fun, Problem #1: