Steven Weinberg: Difference between revisions

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Claimed by Brianna Stacey
Brianna Stacey
 
Short Description of Topic
 
==Early Life==
 
Steven Weinberg was born in 1933.  He attended Cornell and received a Bachelors Degree in 1954.  He proceeded to do research at Niels Bohr Institute and continued to get a PhD in physics from Princeton University in 1957.  He has made many contributions to the realm of science and is now a professor at University of Texas at Austin.  He has recieved many awards in his lifetime
 
 
===Contributions to Physics===
 
What are the mathematical equations that allow us to model this topic.  For example <math>{\frac{d\vec{p}}{dt}}_{system} = \vec{F}_{net}</math> where '''p''' is the momentum of the system and '''F''' is the net force from the surroundings.
 
==Examples==
 
Be sure to show all steps in your solution and include diagrams whenever possible
 
===Simple===
===Middling===
===Difficult===
 
==Connectedness==
#How is this topic connected to something that you are interested in?
#How is it connected to your major?
#Is there an interesting industrial application?
 
 
==References==
 
This section contains the the references you used while writing this page
[https://web2.ph.utexas.edu/~weintech/swbio.html]
[http://www.pbs.org/faithandreason/transcript/wein-frame.html]
[https://en.wikipedia.org/wiki/Steven_Weinberg#Honors_and_awards]
 
 
[[Category:Notable Scientists]]

Revision as of 08:31, 5 December 2015

Brianna Stacey

Short Description of Topic

Early Life

Steven Weinberg was born in 1933. He attended Cornell and received a Bachelors Degree in 1954. He proceeded to do research at Niels Bohr Institute and continued to get a PhD in physics from Princeton University in 1957. He has made many contributions to the realm of science and is now a professor at University of Texas at Austin. He has recieved many awards in his lifetime


Contributions to Physics

What are the mathematical equations that allow us to model this topic. For example [math]\displaystyle{ {\frac{d\vec{p}}{dt}}_{system} = \vec{F}_{net} }[/math] where p is the momentum of the system and F is the net force from the surroundings.

Examples

Be sure to show all steps in your solution and include diagrams whenever possible

Simple

Middling

Difficult

Connectedness

  1. How is this topic connected to something that you are interested in?
  2. How is it connected to your major?
  3. Is there an interesting industrial application?


References

This section contains the the references you used while writing this page [1] [2] [3]