weight-length relationship - definitie. Wat is weight-length relationship
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Wat (wie) is weight-length relationship - definitie

MATERIAL'S STRENGTH (FORCE PER UNIT AREA AT FAILURE) DIVIDED BY ITS DENSITY
Strength to weight ratio; Self support length; Tenacity (textile strength); Free breaking length; Strength-to-weight ratio; Breaking length; Self-support length; Strength/weight ratio; Strength/weight; List of strength of materials; List of strengths of various materials; List of material strengths; Critical length; Strength-to-mass ratio

weigh         
  • Ancient Greek]] official bronze weights dating from around the 6th century BC, exhibited in the [[Ancient Agora Museum]] in Athens, housed in the [[Stoa of Attalus]].
  • 0}} in 0.86 seconds. This is a horizontal acceleration of 5.3{{spaces}}g. Combined with the vertical g-force in the stationary case the [[Pythagorean theorem]] yields a g-force of 5.4{{spaces}}g. It is this g-force that causes the driver's weight if one uses the operational definition. If one uses the gravitational definition, the driver's weight is unchanged by the motion of the car.
  • A [[weighbridge]], used for weighing trucks
  • work=Baburnama}}</ref>
  • moments]] acting on it sum to zero).
FORCE ACTING ON A MASS DUE TO GRAVITY
Gross weight; Measure of weight; Weigh; Net weight; Nett weight; Weighty; Weighing; Ponderous; Gross rail load; Laden weight; Units of weight; Wieght; Heaviness
v.
1) to weigh heavily
2) (d; intr.) ('to count') to weigh against (his testimony will weigh heavily against you)
3) (d; tr.) ('to balance') to weigh against (to weigh one argument against another)
4) (d; intr.) ('to press') to weigh on (legal problems weighed heavily on her mind)
5) (P; intr.) ('to have a weight') the suitcase weighs quite a lot
weight         
  • Ancient Greek]] official bronze weights dating from around the 6th century BC, exhibited in the [[Ancient Agora Museum]] in Athens, housed in the [[Stoa of Attalus]].
  • 0}} in 0.86 seconds. This is a horizontal acceleration of 5.3{{spaces}}g. Combined with the vertical g-force in the stationary case the [[Pythagorean theorem]] yields a g-force of 5.4{{spaces}}g. It is this g-force that causes the driver's weight if one uses the operational definition. If one uses the gravitational definition, the driver's weight is unchanged by the motion of the car.
  • A [[weighbridge]], used for weighing trucks
  • work=Baburnama}}</ref>
  • moments]] acting on it sum to zero).
FORCE ACTING ON A MASS DUE TO GRAVITY
Gross weight; Measure of weight; Weigh; Net weight; Nett weight; Weighty; Weighing; Ponderous; Gross rail load; Laden weight; Units of weight; Wieght; Heaviness
I
n.
amount weighed, heaviness
1) to gain, put on weight
2) to lose, take off weight
3) dead; gross; minimum; net weight
4) atomic; avoirdupois; birth; molecular weight
5) under a weight (the table collapsed under the weight of the food)
device used for its heaviness in athletic exercises
6) to lift weights
7) heavy; light weights
8) a set of weights
importance
9) to carry weight
10) to add; attach, give, lend weight to
11) considerable weight
12) (misc.) to throw one's weight around/about (BE) ('to flaunt one's influence'); to pull one's weight ('to do one's fair share')
II
v. (D; tr.) ('to slant') to weight against (the evidence was weighted against me)
Weight gain         
  • An 1895 advertisement for a weight gain product
INCREASE IN A PERSON'S TOTAL BODY MASS
Abnormal weight gain; Weight Gain; Gain weight; Gaining weight; Causes of weight gain
Weight gain is an increase in body weight. This can involve an increase in muscle mass, fat deposits, excess fluids such as water or other factors.

Wikipedia

Specific strength

The specific strength is a material's (or muscle's) strength (force per unit area at failure) divided by its density. It is also known as the strength-to-weight ratio or strength/weight ratio or strength-to-mass ratio. In fiber or textile applications, tenacity is the usual measure of specific strength. The SI unit for specific strength is Pa⋅m3/kg, or N⋅m/kg, which is dimensionally equivalent to m2/s2, though the latter form is rarely used. Specific strength has the same units as specific energy, and is related to the maximum specific energy of rotation that an object can have without flying apart due to centrifugal force.

Another way to describe specific strength is breaking length, also known as self support length: the maximum length of a vertical column of the material (assuming a fixed cross-section) that could suspend its own weight when supported only at the top. For this measurement, the definition of weight is the force of gravity at the Earth's surface (standard gravity, 9.80665 m/s2) applying to the entire length of the material, not diminishing with height. This usage is more common with certain specialty fiber or textile applications.

The materials with the highest specific strengths are typically fibers such as carbon fiber, glass fiber and various polymers, and these are frequently used to make composite materials (e.g. carbon fiber-epoxy). These materials and others such as titanium, aluminium, magnesium and high strength steel alloys are widely used in aerospace and other applications where weight savings are worth the higher material cost.

Note that strength and stiffness are distinct. Both are important in design of efficient and safe structures.