Loads

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Possible Answers:

A LOT.

Last seen on: –LA Times Crossword, Sat, Jan 28, 2023
Washington Post Crossword Saturday, January 28, 2023
The New Yorker Monday, January 16, 2023 Crossword Answers
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L.A. Times Daily Crossword – Apr 21 2022
L.A. Times Daily Crossword – Mar 11 2022
LA Times Crossword 29 Dec 21, Wednesday
NY Times Crossword 21 Aug 21, Saturday
LA Times Crossword 29 Jun 21, Tuesday
LA Times Crossword 15 Apr 21, Thursday
NY Times Crossword 21 Oct 20, Wednesday
LA Times Crossword 18 Jul 20, Saturday
NY Times Crossword 18 Jun 20, Thursday
The Washington Post Crossword – May 20 2020
NY Times Crossword 5 Feb 20, Wednesday
USA Today Crossword – Jan 3 2020
LA Times Crossword 15 Nov 19, Friday
NY Times Crossword 3 Oct 19, Thursday

Random information on the term “Loads”:

In aeronautics, the load factor is the ratio of the lift of an aircraft to its weight:§ 5.22 and represents a global measure of the stress (“load”) to which the structure of the aircraft is subjected:

where:

Since the load factor is the ratio of two forces, it is dimensionless. However, its units are traditionally referred to as g, because of the relation between load factor and apparent acceleration of gravity felt on board the aircraft. A load factor of one, or 1 g, represents conditions in straight and level flight, where the lift is equal to the weight. Load factors greater or less than one (or even negative) are the result of maneuvers or wind gusts.

The fact that the load factor is commonly expressed in g units does not mean that it is dimensionally the same as the acceleration of gravity, also indicated with g. The load factor is strictly non-dimensional.

The use of g units refers to the fact that an observer on board an aircraft will experience an apparent acceleration of gravity (i.e. relative to their frame of reference) equal to load factor times the acceleration of gravity. For example, an observer on board an aircraft performing a turn with a load factor of 2 (i.e. a 2 g turn) will see objects falling to the floor at twice the normal acceleration of gravity.

Loads on Wikipedia