
This website was created on July 2019 and is updated at best effort basis. Konstantinos Theofilatos is an Associate Professor of Physics in National and Kapodistrian University of Athens. Higher order optimization (which could be problem-specific) to be discussed in class or in homework assigments. Instead, it is purposefully attempted to just demonstrate the core ideas of the underline algorithms, leaving
#DAVID THEOFIL PONFOR CODE#
That is to say, the code is not always optimized having in mind efficiency of execution.įine tuning of the execution flow, while important for speed and precision, often obscures transparency at first site. assume little, or zero programming skills.code length should be minimal and take least effort to comprehend.reflect the math forms taught symbolically as-they-appear in the lecture.The code in CompPhysics/examples is provided for demonstration purposes and is written having in mind three principles:


You can use your gmail/android account to open via all code write-ups. Warning the launching of the interactive environment takes approximately *~0.5-5 minutes, depending on the load, so be patient! Or if you have a Google account (free registration) Revue Theofil - magazín k podpoe ivota z víry. To launch an interactive Python3 environment and play with templates and examples of computational algorithms taught in the course. Internetový obchod Theofil nabízí pedevím kesanské produkty (knihy, média, devocionálie ap.).
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Launch Interactive Computational Environment (no registration needed) The students are strongly encouraged to create their own favorite environment (C/C++, FORTRAN, Matlab, Java, R, Mathematica, Python, Julia … you name it) in their personal computer, once they feel ready to do so. The usage of the present computational environment is optional and is only meant to serve those that find it useful.
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Without having the burden to install manually on their own any software in a private computer. This website provides a cloud-based interactive computing environment, for my undergraduate course (3rd semester, obligatory) of Computational Physics Υπολογιστική Φυσική 10ΥΚΟ21, in National and Kapodistrian University of Athens (2019-2022).īy using this custom made interactive environment, the students are be able to study and practice real implementations of the course’s material Although thyroid stimulating activities were detected in one of the patients with simple goitre (N = 10) and in one with thyroid cancer (N = 10), none of the patients with silent thyroiditis (N = 7), adenomatous goitre (N = 11), and thyroid adenoma (N = 9) were positive for thyroid stimulating antibodies.CompPhysics Computational Physics – Υπολογιστική Φυσική 10ΥΚΟ21 However, it was completely abolished by pre-treatment of the sera with anti-TSH antibodies. Thyroid stimulating activity was also detected in some patients (9/24, 37.5%) with Hashimoto's thyroiditis whose serum TSH concentrations were higher than 30 mU/l. Thyroid stimulating activities were detected in all of the 50 patients with hyperthyroid Graves' disease, the 14 patients with recurrent hyperthyroid Graves' disease, and the 25 patients with ophthalmic Graves' disease. Thyroid stimulating activities measured using FRTL-5 cells significantly correlated with those measured using cultured porcine (r = 0.918, N = 72) or human (r = 0.830, N = 23) thyroid cells.

The assay was sensitive enough to elicit an approximately 30-fold increase in cAMP at 10 mU/l bovine TSH. The removal of NaCl from the isotonic Hank's medium greatly enhanced cAMP production in response to both TSH and thyroid stimulating antibodies. After the incubation at 37☌ for 2 h, cAMP released into Hank's medium without NaCl was determined by radioimmunoassay. A sensitive, precise and practical assay for thyroid stimulating antibodies was developed in which poorly differentiated rat thyroid cells (FRTL-5) were exposed to crude immunoglobulin fractions precipitated from serum with 15% polyethylene glycol under hypotonic conditions.
