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PLE at Lund University @UCTcBhAB55irgVf4c6ASN6nw@youtube.com

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The Department of Process and Life Science Engineering (PLE)


09:12
Comsol demo: Boiling potato
03:07
How does evaporation enthalpy change with pressure?
05:47
Simulating Single Effect Evaporation: 1 Preparation
01:02
Simulating single effect evaporator: 2B Using TS_from_PS
02:42
Simulating single effect evaporator: 2A Using H_steam
05:16
Using root from scipy.optimize
01:18
Simulating single effect evaporator. 2C Using hL_gelatine
05:54
Changing sample code to something else
04:38
Introduction to compulsory task on evaporation
04:24
Evaporation: Mass and energy balances
01:24
Evaporation: Drinking water from sea water
05:23
Evaporation: Heat transfer coefficient
04:06
Evaporation: Design principle
14:40
Single effect simulation: Testing H_steam
10:01
Introduction to KETF10 Separation Processes
03:23
KETF10 Separation Processes in 5 minutes
05:50
Exam task distillation 2023-01-14 (KETF40+KETF10)
03:15
Exam task. Mass transfer theory 2023-01-14 (KETF40)
04:31
Exam task mass transfer 2023-01-14 (KETF40)
07:10
Exam task moist air 2023-01-14 (KETF40)
03:27
Drawing a correct slope (student errors)
03:34
Distillation Rmin versus Nmin (student errors)
08:57
Equilibrium or not? (student errors)
06:07
Check your solutions (student errors)
03:01
Units in Mass and Energy Balances (student errors)
03:56
Gas or liquid? (student errors)
11:49
Unit analysis (and unit errors)
08:31
Calculating concentrations (student unit errors)
01:44
Intro to re-exam hints (KETF40+KETF10)
00:44
NYM 2021 Panel Discussion Highlights
38:13
How can Membrane Technology Contribute to a Sustainable Future? (NYM 2021 Panel Discussion)
01:21
VattenstÀmman 2021 Presentation av VA-teknik Södra
02:49
Visionen om precisionslÀkemedel
04:12
Diffusivity experiment (no sound, stop motion)
08:11
Convection versus diffusion
13:42
KETF40 2014 Course summary
00:51
Finding your group in Canvas
04:01
Adsorption: Introduction
09:52
Membranes for a sustainable future
05:30
Avoid bad variable names in programming
02:55
Surface enlargement to increase heat transfer
06:00
Heat Exchange Lab: Looking at different heat exchangers
17:47
CT1
17:06
Introduction to Comsol Multiphysics 5.5
05:24
KETF40 Mass Trf in Env. Eng. in 5 min
07:11
Freeze drying and drying with superheated steam
04:45
Air recirculation dryers with example
04:55
Drying: Why can't we reach 100% relative humidity?
05:09
Drying: Why more than ∆Hvap?
06:55
Drying rates for (non)-hygroscopic materials
05:11
Hygroscopic materials and drying
05:54
Drying with air: Example
03:09
Drying: Supplying energy
03:45
Dewatering versus drying
04:09
BSA breakthrough example (real data)
02:20
Peak separation example (real data)
04:57
Molecule sieve example (real experimental data)
06:00
SEC example (real data)
02:34
Size Exclusion Chromatography (SEC)
09:40
How to find any value in logarithmic diagram