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1 , a significant push (repulsion) between the low-melting and high-melting lipids, and a significant p
2                              A series of six low-melting DNA hairpins containing all or part of the 5
3 ons created by Pfu DNA polymerase in a 96-bp low melting domain of a human mitochondrial sequence des
4 e amorphous phase are achieved, as well as a low melting energy.
5                    Metal flux synthesis in a low-melting eutectic mixture of lanthanum and nickel has
6 imited extent in Ag 0.51K 0.42Na 0.07NO 3, a low-melting eutectic mixture of silver, potassium, and s
7                                          The low-melting ferritin subdomains are pores, based on perc
8                           The observation of low-melting ferritin subdomains by CD spectroscopy (melt
9                                Palm olein, a low-melting fraction of palm oil, and soy oil can be com
10 tract alone or combined with high-melting or low-melting lecithins.
11 g lipids, and a significant push between the low-melting lipids and cholesterol.
12  the solubilization, whereas the addition of low-melting lipids promoted it.
13 in bilayers composed of high-melting lipids, low-melting lipids, and cholesterol, corresponds to a st
14 opportunities for direct BaTiO3 formation on low-melting or reactive materials (e.g., plastics, cloth
15 ical relations with volumes of ions in these low-melting organic salts.
16 f cholesterol and an exchangeable mimic of a low-melting phospholipid in liquid-disordered bilayers c
17  in a tapered glass micropipet filled with a low melting point alloy.
18 if one or more of the powder reactants has a low melting point and low thermal effusivity, it is poss
19 iously available Cd precursors, owing to the low melting point and robust thermal stability.
20 irrespective of whether this was the high or low melting point component of the mixture.
21 at the large size (5-50 microm in diameter), low melting point gallium droplets can be used as an eff
22  the native interfacial metal oxide layer of low melting point metal precursors (group III and IV) in
23 ZITO) because of its superior volatility and low melting point of 64 degrees C.
24 ted to surface restructuring caused by their low melting point upon laser irradiation.
25  the beads are coated with a solder having a low melting point; (iv) the polymer rods-with embedded b
26 g nanowire via a liquid catalyst, commonly a low-melting point eutectic alloy.
27 ype of frit is found superior to one made of low-melting point poly(styrene-co-divinylbenzene) beads.
28      Binary mixtures of liquid metal (LM) or low-melting-point alloy (LMPA) in an elastomeric or flui
29 acids were present on powder surface whereas low-melting-point fatty acids remained within powder par
30 a distillation-like process is observed: the low-melting-point metal (Pt) bleeds out and the increasi
31                                 Here we show low-melting-point metal alloys containing iron dispersio
32  a low temperature of 650 degrees C by using low-melting-point ternary molten salts CaCl2 -MgCl2 -NaC
33 -point, high-voltage metal (antimony) with a low-melting-point, low-cost metal (lead) advantageously
34 are highly inviscid liquids characterized by low melting points and high solubility of rare earth ele
35                                          The low melting points and high thermal stabilities of PILs
36 a class of non-molecular ionic solvents with low melting points.
37 utions: (i) negligible vapor pressures; (ii) low melting points; (iii) high thermal stabilities.
38  Although known systems yielded amorphous or low-melting polymers, the "sandwich" alpha-diimines 3-6
39 ields of new thermally stable and relatively low melting quaternary salts.
40  plasmonically active, and is a component in low-melting solders and solid-state lubricants.
41 high melting temperature (saturated) lipids, low melting temperature (usually unsaturated) lipids, an
42 OPH) on the cell surface were immobilized in low melting temperature agarose on a nylon membrane and
43 main features that provide insights into the low melting temperature of alpha1(V)alpha2(V)alpha3(V) h
44                    Because of the relatively low melting temperature of the 20-mer hairpin (341 K (68
45  we show this inference is incorrect for the low melting temperature phosphatidylcholines abundant in
46 h is 8 (DLPC/DAPC), the concentration of the low melting temperature phospholipid component in the so
47 hase domains, the local concentration of the low melting temperature phospholipid component increases
48 an intrinsic lack of strength, ductility and low melting temperature severely restricts practical app
49 mposed of ternary mixtures of a lipid with a low melting temperature, a lipid with a high melting tem
50 howed abnormal electrophoretic migration and low melting temperature.
51 a template walking mechanism using a pair of low-melting temperature (Tm) solid-surface homopolymer p
52  bilayers composed of a ternary mixture of a low-melting temperature lipid, a high-melting temperatur
53 ane (Ni, Pt, Pd), when dissolved in inactive low-melting temperature metals (In, Ga, Sn, Pb), produce
54 of complex crystal structures with unusually low melting temperatures, reaching as low as 300 K at 11
55 ed have potential applications, due to their low melting temperatures, wide temperature ranges, and s
56  is most favorable in thinner membranes with low melting temperatures.
57                                  A series of low-melting, thermally stable cadmium metal-organic chem

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