Author = Azadbakht, Mohsen
The effects of ohmic cooking process on some physical and chemical characteristics of button mushrooms

Volume 10, Issue 3, May 2023, Pages 281-298

10.22104/ift.2023.6244.2139

Mehdi Qavanloo; Mohsen Azadbakht; Feryal Varasteh; mohammad vahedi torshizi

The effects of ohmic cooking process on some physical and chemical characteristics of button mushrooms


The Effect of Ohmic Heat Process on Thermal Properties of Green Bean Pod

Volume 8, Issue 1, November 2020, Pages 29-45

10.22104/jift.2020.4088.1953

Arash Rokhbin; Mohsen Azadbakht; Ali Asghari

The Effect of Ohmic Heat Process on Thermal Properties of Green Bean Pod


Evaluation of the effect of UV light on the biochemical properties of egg internal contents using the response surface method

Volume 7, Issue 3, May 2020, Pages 365-378

10.22104/jift.2020.3560.1856

Mohammad javad Mahmoodi Mahmoodi; , Mohsen Azadbakht; Ali Asghari; Behrouz Dastar

Evaluation of the effect of UV light on the biochemical properties of egg internal contents using the response surface method


Investigation of the effect of ohmic heat treatment on some mechanical properties of closed pistachio

Volume 7, Issue 2, February 2020, Pages 189-200

10.22104/jift.2019.3383.1810

Mohsen Azadbakht; Hamid Rayeni Moghbeli; Mohammad Vahedi Torshizi

Investigation of the effect of ohmic heat treatment on some mechanical properties of closed pistachio


Investigating effect of physical factors on ohmic thermal process performance in sour orange juice processing

Volume 7, Issue 1, November 2019, Pages 1-15

10.22104/jift.2019.3411.1818

Mohammad vahedi Torshizi; Mohsen Azadbakht; Mahdi Kashaninejad

Investigating effect of physical factors on ohmic thermal process performance in sour orange juice processing


Determination of pear bruises due to a thin edge compression load by CT scan method

Volume 6, Issue 3, May 2019, Pages 305-321

10.22104/jift.2018.2842.1684

Mohsen Azadbakht; Mohammad Vahedi Torshizi; Mohammad Javad Mahmoodi

Determination of pear bruises due to a thin edge compression load by CT scan method