Показ 1,921 - 1,940 результатів із 28,527 для пошуку 'form is (((((evolves. OR evolves.) OR evolveddssdds.) OR evolvedd.) OR involved.) OR involves.)*', час виконання запиту: 0.69сек. Уточнити результати
  1. 1921
  2. 1922

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  3. 1923

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  4. 1924

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  5. 1925

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  6. 1926

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  7. 1927

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  8. 1928

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  9. 1929

    Rate-Dependent Pattern Evolution in Peeling Adhesive Tape Driven by Cohesive Failure за авторством Yi Sun (118759)

    Опубліковано 2022
    “...In the case of low-rate peeling, an adhesive can undergo a large tensile deformation through the viscous flow and form the fingering pattern at the peeling interface, resulting in homogeneous stripes on the peeled surface. ...”
  10. 1930

    Diagram indicating possible interactions of mRNA-bound and associated proteins involved with Xp54 helicase in the remodelling of mRNP for storage, translation and degradation за авторством Andrew Weston (63123)

    Опубліковано 2011
    “...Furthermore, translation repression may involve formation of a 3′–5′ molecular bridge between the protein that binds to the cytoplasmic polyadenylation element (CPEB), oligomerized Xp54 and the cap-binding protein eIF4E. ...”
  11. 1931

    Percentage of int rings showing full rotation between 393–441 minutes. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети:
  12. 1932

    Lumen formation and int ring rotation. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети:
  13. 1933

    A paradigm for ontogenic global genome programming by nFGFR1. за авторством Christopher Terranova (432339)

    Опубліковано 2015
    Предмети: “...Global Developmental Gene Programing Involves...”
  14. 1934

    MADD-2 expression in the primordium. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети:
  15. 1935

    Intestinal twist with respect to surrounding tissues. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети:
  16. 1936

    Cell repositioning between the E4 and E16 stages. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети:
  17. 1937

    nFGFR1 regulates the expression of <i>Homeobox</i> genes in RA-treated NCs. за авторством Christopher Terranova (432339)

    Опубліковано 2015
    Предмети: “...Global Developmental Gene Programing Involves...”
  18. 1938

    Diagonal RaL, LaR, and Cross contacts in intestinal cells at hatching. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети:
  19. 1939

    nFGFR1 targets pluripotentcy core genes and motifs in pluripotent transcription-factors (TFs). за авторством Christopher Terranova (432339)

    Опубліковано 2015
    Предмети: “...Global Developmental Gene Programing Involves...”
  20. 1940

    Non-intestinal cells contribute to int ring rotation. за авторством Alparsan Asan (2585941)

    Опубліковано 2016
    Предмети: