Note: The above coordinates are NOT the
location of the cache. The problem below will have to be solved to
find the correct coordinates.
Warning: If you did not like high school level algebra and
physics, then you may not enjoy doing this cache.
A couple months ago I was finishing a round of golf and noticed
the moon in the sky. It was a couple hours before sunset, but the
moon was very visible against the blue sky. My mind wandered a bit
as I walked down the fairway and I thought to myself, “I wonder how
far this shot would have gone if I could have hit it while on the
moon… like Alan Shepard did.” Well, needless to say this gave me an
idea for a geocache. What if someone with a swing like Tiger Woods,
could hit a six-iron, the club that Alan Shepard used, from the
surface of the moon, over the edge and into a giant crater? How far
would it go? How long would it be in flight? Hmmm... the
possibilities.
I have come across quite a few different “puzzle” type caches,
but have not yet come across one that required the use of some math
AND science skills, so I thought that I would create one. I’m
considering creating some other science related caches in the
future for a “Science Series” of caches. Maybe a biology related
one, a chemistry related one, etc.
The solution to this problem does not take an engineering
degree, or any rocket science to solve… just some high school level
math and physics. (at least it was HS level, long ago when I was
that age) If you don’t remember the equations that are needed you
will be able to find them on the internet. However, beware… I have
designed this so that you will actually have to do the
calculations. If you try to use one of the “plug and play” type of
solution calculators on the internet, you will likely get the wrong
answer(s). And I'm almost certain that you won't find one that will
give you all of the needed answers. If you write out the formulas,
and keep the units straight, you should get the correct answers. I
chose the moon for this problem for several reasons - the
gravitational acceleration is far less than on earth, moon has no
atmosphere to produce drag, we've actually had an American hit a
golf ball on the moon, and it makes it interesting. :-)
Here is the scenario: (reference diagram below)
A moon golfer hits a six-iron from near the edge of the crater
Tycho - this is the crater that has the long ejecta rays that form
a "star" pattern and be seen with a pair of binoculars. As this is
a "professional" moon golfer, the ball takes off at an initial
velocity of 150 miles per hour (typical speed for a six-iron), and
at an initial angle of 30 degrees (typical loft of a six-iron). You
will need to find:
1)The final velocity of the ball (“Vf”) in kilometers per
hour,
2)The horizontal distance it traveled (“x”) in meters,
3)The time the ball was in flight (“t”) in seconds,
4)and the angle it’s traveling when it lands (“a”) in
degrees.
See figure below for further explanation.
The cache is located at:
N41.TTDDDD
W081.AA8SSS
(Note: the coordinates are in DecDeg format)
Where:
DDDD = the horizontal distance traveled “x” in meters, plus 145
and then ‘rounded’ to the nearest whole number; ie. DDDD =
(“x”meters)+145 rounded to integer.
TT = total flight time in seconds (t) divided by 5 plus 2, and
rounded to nearest whole number. ; ie TT = [(“t” sec) / 5] + 2,
rounded to nearest integer.
AA = the final approach angle “A”, in degrees minus 4, ("A" deg.) -
4 rounded to the nearest integer.
SSS = the final speed “Vf” in kilometers per hour plus 40; ie SSS =
("Vf" km/hr) + 40, rounded to nearest integer.
Here is the only information that you will need to get the above
answers: (You should use at least three significant figures after
the decimal point for all your calculations.)
• Mass of moon = 7.349 x 10E22 kg (from NASA)
• Radius of moon = 1.738 x 10E6 m
• Gravitational constant “G” = 6.67428 x 10E-11 m3/kg*s^2 (from
NIST)
• Depth of Tycho crater = 4.80km = 4800m
• Initial velocity = 150mph
• Initial angle of flight = 30deg
(Note: there are different sources of values for each of the
above constants. The ones given are from NASA and NIST, so use the
values above, or you may get different answers.)
The cache is a camouflaged regular size container, with a
water-tight screw on lid. It has a logbook, a set of “AA”
batteries, pen, pencil, logbook, and a new set of reading glasses.
It is winter friendly... well, no more friendly than summer. Have
fun.
You can check your answers for this puzzle on
Geochecker.com.
.
Congratulations to "jjandi" for the first
to solve and first to find!!.