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Francis Crick - Profiles in Science
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Francis Crick
The Francis Crick Papers
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The Discovery of the Double Helix, 1951-1953
Defining the Genetic Coding Problem, 1954-1957
Deciphering the Genetic Code, 1958-1966
Embryology and the Organization of DNA in Higher Organisms, 1966-1976
From Molecular Biology to Neurobiology, 1976-2004
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Crick, Francis, 1916-2004
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Towards a Neurobiological Theory of Consciousness
1 of 71
The Function of Dream Sleep
2 of 71
Selfish DNA [Editorial letter]
3 of 71
Selfish DNA: The Ultimate Parasite
4 of 71
How to Live with a Golden Helix
5 of 71
Split Genes and RNA Splicing
6 of 71
Is DNA Really a Double Helix?
7 of 71
Higher-Order Structure of Human Mitotic Chromosomes
8 of 71
Linking Numbers and Nucleosomes
9 of 71
Obituary of Jacques Monod
10 of 71
A Speculation on the Origin of Protein Synthesis
11 of 71
Kinky Helix
12 of 71
Compartments and Polyclones in Insect Development
13 of 71
The Double Helix: A Personal View
14 of 71
Directed Panspermia
15 of 71
Project K: 'The Complete Solution of E. Coli'
16 of 71
General Model for the Chromosomes of Higher Organisms
17 of 71
The Time Needed to Set Up a Gradient: Detailed Calculations
18 of 71
The Scale of Pattern Formation
19 of 71
Molecular Biology in the Year 2000
20 of 71
Central Dogma of Molecular Biology
21 of 71
Diffusion in Embryogenesis
22 of 71
DNA: Test of Structure? [Editorial letter]
23 of 71
Molecular Biology and Medical Research
24 of 71
On Running a Summer School
25 of 71
The Origin of the Genetic Code
26 of 71
An Error in Model Building [Editorial letter]
27 of 71
UGA: A Third Nonsense Triplet in the Genetic Code
28 of 71
Origin of the Genetic Code [Editorial letter]
29 of 71
The Absolute Sign of Certain Phase-Shift Mutants in Bacteriophage T4
30 of 71
The Croonian Lecture, 1966: The Genetic Code
31 of 71
The Computer, the Eye, the Soul
32 of 71
Codon-Anticodon Pairing: The Wobble Hypothesis
33 of 71
The Genetic Code--Yesterday, Today, and Tomorrow
34 of 71
General Nature of the Genetic Code
35 of 71
The Biochemistry of Genetics
36 of 71
The Theory of Inter-allelic Complementation
37 of 71
On the Genetic Code
38 of 71
Towards the Genetic Code
39 of 71
General Nature of the Genetic Code for Proteins
40 of 71
The Theory of Mutagenesis [Editorial letter]
41 of 71
The Molecular Structure of Polyadenylic Acid
42 of 71
DNA
43 of 71
What Are the Properties of Genetic RNA?: A Note for the RNA Tie Club
44 of 71
Some Footnotes on Protein Synthesis: A Note for the RNA Tie Club
45 of 71
The Present Position of the Coding Problem
46 of 71
On Protein Synthesis
47 of 71
X-Ray Analysis and Protein Structure
48 of 71
Codes Without Commas
49 of 71
Virus Structure: General Principles
50 of 71
The Structure of Collagen
51 of 71
The Structure of the Nucleic Acids and Related Substances
52 of 71
X-Ray Diffraction of Protein Crystals
53 of 71
Structure of Small Viruses
54 of 71
The Structure of DNA
55 of 71
The Structure of Collagen
56 of 71
Structure of Polyglycine II
57 of 71
On Degenerate Templates and the Adaptor Hypothesis: A Note for the RNA Tie Club
58 of 71
Structure and Function of DNA
59 of 71
The Complementary Structure of Deoxyribonucleic Acid
60 of 71
The Complementary Structure of DNA
61 of 71
The Structure of the Synthetic alpha-Polypeptides
62 of 71
Genetical Implications of the Structure of Deoxyribonucleic Acid
63 of 71
Molecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic Acid
64 of 71
A Structure for DNA (draft)
65 of 71
The Structure of DNA
66 of 71
A Structure for DNA (draft)
67 of 71
Is [alpha]-Keratin a Coiled Coil?
68 of 71
Evidence for the Pauling-Corey alpha-Helix in Synthetic Polypeptides [Editorial letter]
69 of 71
The Physical Properties of Cytoplasm: A Study by Means of the Magnetic Particle Method, Part I. Experimental
70 of 71
The Physical Properties of Cytoplasm: A Study by Means of the Magnetic Particle Method, Part II. Theoretical Treatment
71 of 71
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