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A study of spin-lattice relaxation rates of glucose, fructose, sucrose and cherries using high-T
c
SQUID-based NMR in ultralow magnetic fields
Shu Hsien Liao
, Pei Che Wu
Undergraduate Program of Electro-Optical Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
3
Citations (Scopus)
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Dive into the research topics of 'A study of spin-lattice relaxation rates of glucose, fructose, sucrose and cherries using high-T
c
SQUID-based NMR in ultralow magnetic fields'. Together they form a unique fingerprint.
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Engineering & Materials Science
Spin-lattice relaxation
100%
Fructose
83%
SQUIDs
76%
Sugar (sucrose)
73%
Nuclear magnetic resonance
61%
Glucose
58%
Magnetic fields
44%
Sugars
20%
Fruits
19%
Molecules
16%
Polarization
15%
Chemical Compounds
Spin-Lattice Relaxation
60%
NMR Signal
58%
Fructose
54%
Sucrose
48%
Magnetic Field
47%
Glucose
37%
Strength
16%
Molecule
8%
Physics & Astronomy
sucrose
65%
glucose
58%
spin-lattice relaxation
53%
nuclear magnetic resonance
40%
magnetic fields
25%
fruits
23%
sugars
21%
curves
9%
polarization
9%
molecules
9%
interactions
6%