rule$71358$ - traduzione in greco
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rule$71358$ - traduzione in greco

RULE THAT USES DERIVATIVES TO HELP EVALUATE LIMITS INVOLVING INDETERMINATE FORMS
LHospitals rule; LHospital's rule; L'Hopital's rule; LHopital's rule; L'Hospital's rule; LHopitals rule; L'hopital's rule; L'Hopital's Rule; L'Hôspital's rule; L'hopitals rule; L'Hospital's Rule; L'Hospital rule; Wopitals rule; L'Hôpital's Rule; L’Hospital’s rule; L'hospital's rule; L'hôpital's rule; L'Hopital rule; L'Hôpital rule; Hopital's rule; De L'Hospital's Rule; Bernoulli's rule; L' Hopital's Rule; Hospitals rule; Lhopitals rule; Rule of L'Hôpital
  • ''g''′(0)}} = −2}}.

rule      
v. χαρακώνω, κυβερνώ, διέπω
golden rule         
  • ''The Sermon on the Mount'' by [[Carl Bloch]] (1877) portrays [[Jesus]] teaching during the [[Sermon on the Mount]]
  • The golden rule, as described in numerous world religions
PRINCIPLE OF TREATING OTHERS AS ONE WANTS TO BE TREATED
Golden rule; Ethic of Reciprocity; Supreme Law; Golden Rule (ethics); User:For7thGen/Golden Rule; Silver Rule; Golden rule (ethics); Ethics of reciprocity; Christianity's Golden Rule; Golden rules; Reciprocity rule; Do unto others; Do as you would be done by; Silver rule; Ethic of reciprocity; The golden Rule; The Golden rule (ethics); The Golden Rule (ethics); The Silver Rule; The Golden Rule; Golden maxim; Golden Maxim; Do Unto Others; Love of neighbor; Love of neighbour; Regula aurea; Platinum Rule (principle); Love thy neighbour as thyself
χρυσός κανόνας
slide rule         
  • Quadratic and reciprocal scales
  • 1763 illustration of a slide rule
  • [[Faber-Castell]] slide rule with pouch
  • Electronic Calculating Punch]] explicitly comparing electronic computers to engineers calculating with slide rules
  • This slide rule is positioned to yield several values: From C scale to D scale (multiply by 2), from D scale to C scale (divide by 2), A and B scales (multiply and divide by 4), A and D scales (squares and square roots).
  • A duplex slide rule set to multiply any 2 by any number up to 50.
  • A slide rule made from index cards marked with powers of 2.
  • 550px
  • 300px
  • 300px
  • Engineer using a slide rule, with mechanical calculator in background, mid 20th century
  • The [[TI-30]] scientific calculator, introduced for under US$25 in 1976
  • adj=on}} teaching slide rule compared to a normal-sized model
MECHANICAL ANALOG COMPUTER
Slide ruler; Slide rules; Cursor (slide rules); Slide-rule; Sliderule; Slipstick; Slipsticks; Circular slide rule; Addition Slide Rule; Slide Rule; Cursor (slide rule); Circular calculator; Slide rule calculator; Sliderules; Wheel (slide rule); Cylindrical slide rule
λογαριθμικός κανόνας

Definizione

mail box rule
n. in contract law, making a written offer or acceptance of offer valid if sent in the mail, with postage, within the time in which the offer must be accepted, unless the offer requires acceptance by personal delivery on or before the specified date. The rule may also apply to mailing payments of insurance premiums when due. However, relying on this so-called "rule" can be dangerous, since the party awaiting the acceptance or payment may cancel the offer if there is no response in hand when the time runs out.

Wikipedia

L'Hôpital's rule

L'Hôpital's rule (, loh-pee-TAHL), also known as Bernoulli's rule, is a mathematical theorem that allows evaluating limits of indeterminate forms using derivatives. Application (or repeated application) of the rule often converts an indeterminate form to an expression that can be easily evaluated by substitution. The rule is named after the 17th-century French mathematician Guillaume de l'Hôpital. Although the rule is often attributed to l'Hôpital, the theorem was first introduced to him in 1694 by the Swiss mathematician Johann Bernoulli.

L'Hôpital's rule states that for functions f and g which are differentiable on an open interval I except possibly at a point c contained in I, if lim x c f ( x ) = lim x c g ( x ) = 0  or  ± , {\textstyle \lim _{x\to c}f(x)=\lim _{x\to c}g(x)=0{\text{ or }}\pm \infty ,} and g ( x ) 0 {\textstyle g'(x)\neq 0} for all x in I with xc, and lim x c f ( x ) g ( x ) {\textstyle \lim _{x\to c}{\frac {f'(x)}{g'(x)}}} exists, then

lim x c f ( x ) g ( x ) = lim x c f ( x ) g ( x ) . {\displaystyle \lim _{x\to c}{\frac {f(x)}{g(x)}}=\lim _{x\to c}{\frac {f'(x)}{g'(x)}}.}

The differentiation of the numerator and denominator often simplifies the quotient or converts it to a limit that can be evaluated directly.