Kirjojen hintavertailu – 12 903 725 kirjaa ja 27 kauppaa

Kirjailija

Ulrich Engelmann

Kirjat ja teokset yhdessä paikassa: 5 kirjaa, julkaisuja vuosilta 1978–2025, suosituimpiin kuuluu Handwörterbuch der Volkswirtschaft. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

5 kirjaa

Kirjojen julkaisuvuodet: 1978–2025.

Handwörterbuch der Volkswirtschaft

Handwörterbuch der Volkswirtschaft

Hermann Adam; Harald Albuschkat; Reinhard Blasig; Alfred Bohnen; Armin Bohnet; Peter Breitenstein; Gerhard Brinkmann; Hartwig Donner; Günter Ebert; Wolfgang Eichhorn; Ute Ellerbrock-Rehbein; Ursula Engelen-Kefer; Werner Wilhelm Engelhardt; Ulrich Engelmann; Horst Friedrich; Wilhelm Gehrig; Werner Glastetter; Friedrich Golter; Hartmut Gumpert; Knud Hansen; Heinz Dieter Hessler; Wilfried Höhnen; Werner H. Hoyer; Gisela Kiesau; Guy Kirsch; Wim Kösters; Norbert Koubek; Wilhelm Krelle; Hansheinz Kreuter; Christian Leipert

Gabler Verlag
1980
nidottu
Handwörterbuch der Volkswirtschaft

Handwörterbuch der Volkswirtschaft

Rolf Rettig; Friedrich Golter; Eduard Mändle; Ursula Engelen-Kefer; Reinhard Blasig; Werner Glastetter; Hermann Schubnell; Gerhard Brinkmann; Werner Oehler; Rainer Thoss; O.-Ernst Starke; Wolfgang Mansfeld; Hermann Adam; Rainer Skiba; Wilhelm Krelle; Günter Sandermann; Ulrich Engelmann; Wolfgang Pieper; Klaus Mackscheidt; Guy Kirsch; Heinz Dieter Hessler; Hans G. Schachtschabel; Eugen Paul; Wim Kösters; Werner H. Hoyer; Theo Thiemeyer; Hans-Werner Winter; Werner Wilhelm Engelhardt; Günter Ebert; Horst Friedrich; Manfred Neumann

Gabler Verlag
1978
nidottu
Magnetic Fluid Hyperthermia

Magnetic Fluid Hyperthermia

Ulrich Engelmann

Infinite Science Publishing
2019
pokkari
Magnetic fluid hyperthermia (MFH) uses magnetic nanoparticles (MNP) to transform the energy of an alternating magnetic field into heat via magnetic relaxation. This enables organ-confined cancer treatment by delivering cell-damaging temperatures higher than 43 C inside tumors. However, MNP-cell interaction restricts MNP mobility and causes MNP agglomeration, severely limiting the MNP heating behavior. Based on in vitro experiments, this book addresses the applicability of MFH to pancreatic tumor cells and discusses optimizations of intracellular MNP heating for clinical application. The impact of MNP-cell interaction on heating efficiency is quantified and compared to MNP systems mimicking intracellular conditions. Besides, Monte-Carlo simulation of MNP magnetic relaxation is used to predict optimal field parameters and MNP properties to maximize MFH efficiency under medical constraints.