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![Giant magnetocaloric effect for (Mn, Fe, V)2(P, Si) alloys with low hysteresis](/islandora/object/uuid:9b12e05f-859d-4233-ae02-9fe762741a1e/datastream/TN/view)
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Giant magnetocaloric effect for (Mn, Fe, V)2(P, Si) alloys with low hysteresis
![Magnetocaloric effect in the (Mn,Fe)<sub>2</sub>(P,Si) system](/islandora/object/uuid:e4c0a283-4419-481c-b95b-2d0c34bd249f/datastream/TN/view)
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Magnetocaloric effect in the (Mn,Fe)2(P,Si) system: From bulk to nano
![Ultra-low Hysteresis in Giant Magnetocaloric Mn<sub>1-x</sub>V<sub>x</sub>Fe<sub>0.95</sub>(P,Si,B) Compounds](/islandora/object/uuid:17ba9939-34b7-4480-a991-4075f1a2780c/datastream/TN/view)
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Ultra-low Hysteresis in Giant Magnetocaloric Mn1-xVxFe0.95(P,Si,B) Compounds
![Tuning the magneto-elastic transition of (Mn,Fe,V)<sub>2</sub>(P,Si) alloys to low magnetic field applications](/islandora/object/uuid:5121aba4-f448-4153-b22c-547b2c67ae77/datastream/TN/view)
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Tuning the magneto-elastic transition of (Mn,Fe,V)2(P,Si) alloys to low magnetic field applications
![Combined effect of annealing temperature and vanadium substitution for mangetocaloric Mn<sub>1.2-x</sub>V<sub>x</sub>Fe<sub>0.75</sub>P<sub>0.5</sub>Si<sub>0.5</sub> alloys](/islandora/object/uuid:a38964e9-9774-4e17-870a-7acdee8cd4c5/datastream/TN/view)
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Combined effect of annealing temperature and vanadium substitution for mangetocaloric Mn1.2-xVxFe0.75P0.5Si0.5 alloys
![Reversible low-field magnetocaloric effect in Ni-Mn-In-based Heusler alloys](/islandora/object/uuid:e57cc197-bedf-4343-918a-4b6d22387b6c/datastream/TN/view)
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Reversible low-field magnetocaloric effect in Ni-Mn-In-based Heusler alloys