numerical mutation - translation to ρωσικά
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numerical mutation - translation to ρωσικά

STUDY OF ALGORITHMS THAT USE NUMERICAL APPROXIMATION FOR THE PROBLEMS OF MATHEMATICAL ANALYSIS
Numerical Analysis; Numerical solution; Numerical methods; Numerical approximation; Numerically; Numerical computation; Numberic; Numerical mathematics; Numerical calculus; Numeric analysis; Numerical algorithm; Numeric method; Numeral analysis; Numerical software; Numerical programming; Numerical evaluation; Numerical calculation; Numeric computation; Numerical computing; Numerical analysis software; Numerical analyst; History of numerical analysis; Numeric algorithm

numerical mutation      

общая лексика

количественная мутация (изменение числа хромосом)

mutate         
  • date=31 December 2015 }}</ref>
  • Five types of chromosomal mutations
  • fitness]] of each mutant was compared with the ancestral type. A fitness of zero, less than one, one, more than one, respectively, indicates that mutations are lethal, deleterious, neutral, and advantageous.<ref name="Sanjuán04" />
  • A red [[tulip]] exhibiting a partially yellow petal due to a mutation in its genes
  • Types of small-scale mutations
  • This figure shows a simplified version of loss-of-function, switch-of-function, gain-of-function, and conservation-of-function mutations.
  • translational]] regulation of [[gene expression]].
  • Selection of disease-causing mutations, in a standard table of the [[genetic code]] of [[amino acid]]s<ref>References for the image are found in Wikimedia Commons page at: [[Commons:File:Notable mutations.svg#References]].</ref>
  • Point mutations classified by impact on protein
  • somatic]] mutation that may also be passed on in the [[germline]].
  • ''[[Prodryas persephone]]'', a Late [[Eocene]] butterfly
  • Mutation with double bloom in the Langheck Nature Reserve near [[Nittel]], Germany
CHANGE OF THE NUCLEOTIDE SEQUENCE OF THE GENOME OF AN ORGANISM
Mutations; Genetic mutation; Mutates; Mutate; Mutation and disease; Gene mutation; Loss-of-function mutation; Gain-of-function mutation; Neomorphic mutation; Antimorphic mutation; Amorphic mutation; Loss-of-function; Mutant allele; Genetic mutations; Conditional lethal mutation; Conditional mutation; Mutation event; Loss of function; Mutated; Spontaneous mutation; Mutant proteins; Nuclear mutation; Reversion (genetics); Genetic damage; DNA mutations; Chromosomal gain; Beneficial mutation; Acquired genetic mutation; Reverse mutation; Genetic changes; Mutating; Viral mutation; Backmutation; Back-mutation; Gene mutation analysis; Extragenic; Radiation genetics; Mutant Proteins; DNA error; In-frame mutation; In-frame deletion; DNA mutation; Mutational; Distribution of fitness effects; Types of mutation; Sporadic mutation; Harmful mutation; Deleterious mutation; Sport (genetics); Mutation (biology); Inactivating mutation; De novo mutations; Activating mutations; Mutant spectrum; Deformation (biology); Loss-of-function mutant; Gain of function mutation; Substitution (genetics); Loss of function mutation
mutate v. 1) видоизменять(ся) 2) phon. подвергать(ся) умляуту
mutation         
  • date=31 December 2015 }}</ref>
  • Five types of chromosomal mutations
  • fitness]] of each mutant was compared with the ancestral type. A fitness of zero, less than one, one, more than one, respectively, indicates that mutations are lethal, deleterious, neutral, and advantageous.<ref name="Sanjuán04" />
  • A red [[tulip]] exhibiting a partially yellow petal due to a mutation in its genes
  • Types of small-scale mutations
  • This figure shows a simplified version of loss-of-function, switch-of-function, gain-of-function, and conservation-of-function mutations.
  • translational]] regulation of [[gene expression]].
  • Selection of disease-causing mutations, in a standard table of the [[genetic code]] of [[amino acid]]s<ref>References for the image are found in Wikimedia Commons page at: [[Commons:File:Notable mutations.svg#References]].</ref>
  • Point mutations classified by impact on protein
  • somatic]] mutation that may also be passed on in the [[germline]].
  • ''[[Prodryas persephone]]'', a Late [[Eocene]] butterfly
  • Mutation with double bloom in the Langheck Nature Reserve near [[Nittel]], Germany
CHANGE OF THE NUCLEOTIDE SEQUENCE OF THE GENOME OF AN ORGANISM
Mutations; Genetic mutation; Mutates; Mutate; Mutation and disease; Gene mutation; Loss-of-function mutation; Gain-of-function mutation; Neomorphic mutation; Antimorphic mutation; Amorphic mutation; Loss-of-function; Mutant allele; Genetic mutations; Conditional lethal mutation; Conditional mutation; Mutation event; Loss of function; Mutated; Spontaneous mutation; Mutant proteins; Nuclear mutation; Reversion (genetics); Genetic damage; DNA mutations; Chromosomal gain; Beneficial mutation; Acquired genetic mutation; Reverse mutation; Genetic changes; Mutating; Viral mutation; Backmutation; Back-mutation; Gene mutation analysis; Extragenic; Radiation genetics; Mutant Proteins; DNA error; In-frame mutation; In-frame deletion; DNA mutation; Mutational; Distribution of fitness effects; Types of mutation; Sporadic mutation; Harmful mutation; Deleterious mutation; Sport (genetics); Mutation (biology); Inactivating mutation; De novo mutations; Activating mutations; Mutant spectrum; Deformation (biology); Loss-of-function mutant; Gain of function mutation; Substitution (genetics); Loss of function mutation
mutation noun 1) изменение, перемена 2) превратность 3) biol. мутация 4) phon. перегласовка, умляут

Ορισμός

mutate
¦ verb undergo or cause to undergo mutation.
Derivatives
mutative adjective
mutator noun
Origin
C19: back-form. from mutation.

Βικιπαίδεια

Numerical analysis

Numerical analysis is the study of algorithms that use numerical approximation (as opposed to symbolic manipulations) for the problems of mathematical analysis (as distinguished from discrete mathematics). It is the study of numerical methods that attempt at finding approximate solutions of problems rather than the exact ones. Numerical analysis finds application in all fields of engineering and the physical sciences, and in the 21st century also the life and social sciences, medicine, business and even the arts. Current growth in computing power has enabled the use of more complex numerical analysis, providing detailed and realistic mathematical models in science and engineering. Examples of numerical analysis include: ordinary differential equations as found in celestial mechanics (predicting the motions of planets, stars and galaxies), numerical linear algebra in data analysis, and stochastic differential equations and Markov chains for simulating living cells in medicine and biology.

Before modern computers, numerical methods often relied on hand interpolation formulas, using data from large printed tables. Since the mid 20th century, computers calculate the required functions instead, but many of the same formulas continue to be used in software algorithms.

The numerical point of view goes back to the earliest mathematical writings. A tablet from the Yale Babylonian Collection (YBC 7289), gives a sexagesimal numerical approximation of the square root of 2, the length of the diagonal in a unit square.

Numerical analysis continues this long tradition: rather than giving exact symbolic answers translated into digits and applicable only to real-world measurements, approximate solutions within specified error bounds are used.

Μετάφραση του &#39numerical mutation&#39 σε Ρωσικά