Parabolic trajectory videos
(i.e., Parabolic trajectory
videos):
- Parabolic motion Range of a projectile | 0:31:
In the ideal limit when
air drag is
zero,
objects near the
Earth's surface follow exact
parabolic trajectories
(i.e., y=a-bx**2 paths with "a" and "b" positive).
The launch ballistics elevation
45° gives the maximum range as the
video shows.
Good for the classroom.
- How To Do A Basic Somersault | 1:59, jumps
to 0:45:
Once the gymnastist has left the
ground, their center of mass
must follow a parabolic trajectory
no matter what their internal motions are.
When gravity is the only
external force, it dictates
that the center of mass motion
is a parabolic trajectory.
Just show a few seconds.
Good for the classroom---but don't
try this at home.
- Juggling Club Passing 20180513 002 | 0:39:
Similarly, the juggling club
centers of mass
follow parabolic trajectories
no matter how they are rotating during
juggling passing.
Just show a few seconds.
Good for the classroom.
- New Style Swimming Pool Decoration Led Lighted Jumping Jet Fountain | 0:10:
For two
thousand
years at least since the
ancient Roman fountains,
humankind has
known jet
fountains whereby you can
just see a frozen
parabolic trajectory, but
it took Galileo (1564--1642)
to discover parabolic trajectory
for projectile motion
near the Earth's surface
(see Wikipedia: Galileo Galilei
Scientific methods;
Wikipedia: Parabola: History).
Probably, all those ballisticians
who fired catapults,
trebuchets,
and early cannon NEVER thought
of scientific idealization, and so
air drag was always
present in their empirical understanding.
They also lacked the doctrine of controlled
experimentation,
and lacked a mathematical understanding of constant
acceleration.
Good for the classroom.
- Dick Fosbury Changes The High Jump
Forever - Fosbury Flop- Mexico 1968 Olympics | 0:32:
Dick Fosbury (1947--2023) at the
1968 Summer Olympics, Mexico City.
Dick Fosbury did NOT
invent the Fosbury flop,
but he perfected it and brought it to high-level
sports competition
(see Wikipedia: Fosbury flop).
Notice the folks just lounging under
beach umbrellas---they're
having a long day under the bright
Sun
in Mexico City
at elevation ∼ 2000 m.
Good for the classroom.
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