tinyPhysics's profile picture. Tiny Courses in #Physics: knowledge nuggets and interesting facts about physics, curated by @tinyCourses.

tinyPhysics

@tinyPhysics

Tiny Courses in #Physics: knowledge nuggets and interesting facts about physics, curated by @tinyCourses.

tinyPhysics reposted

#tinyCourse: #Wolfram_Physics_Project】Wolfram Physics Project: j.mp/2yTwUxk. Everything is just space, and other things will emerge as features of space ... @StephenWolfram's intro: j.mp/3cjBJhQ #physics #Wolfram #fundamental_theory_of_physics


'A free introduction to quantum computing and quantum mechanics' by Andy Matuschak and Michael Nielsen: j.mp/3c34wHr


"Course of Theoretical #Physics#" (《理论#物理#教程》)是一部十卷的理论物理教材,作者为列夫·#朗道#(Lev #Landau#) 及其学生叶夫根尼·#利夫希茨#(Evgeny #Lifshitz#):j.mp/2MrFWnSj.mp/2MpBpCF #中文


"Course of Theoretical #Physics", a ten-volume series of textbooks covering theoretical physics written by Lev #Landau and his student Evgeny #Lifshitz: j.mp/2MpBpCF


#西门子#(#Siemens#) 又称 #mho# (符号: #℧#) 是#电导#、#电纳#和#导纳#(electric conductance/susceptance/admittance)的#单位#。 值为#欧姆#( #Ohm)的倒数: j.mp/2Lu8xJ5, j.mp/2LzD3kR #中文


#Siemens or #mho (symbol: #℧) is a #unit of electric conductance/susceptance/admittance whose value is the inverse of #Ohm (): j.mp/2Lu8xJ5, j.mp/2LzD3kR


#微课程#:#兆周#】兆周是#频率##单位#。1 兆周 = 1000000/秒= 1 兆赫兹(英文:megahertz,缩写:MHz)。j.mp/2kqT5DKj.mp/2knKLVn #中文


#物理学##微课程#:therm 单位】「#therm#」(中译:#煤气热量单位#,#克卡#,#舍卡#等等) 是一个热能单位,大约等于100立方英尺天然气燃烧释放的能量: j.mp/wiki_therm j.mp/wa_therm #中文

tinyPhysics's tweet image. 【#物理学##微课程#:therm 单位】「#therm#」(中译:#煤气热量单位#,#克卡#,#舍卡#等等) 是一个热能单位,大约等于100立方英尺天然气燃烧释放的能量: j.mp/wiki_therm j.mp/wa_therm #中文

#电容式触摸屏# (#capacitative touch screen#) 是在#欧洲核子中心#(#CERN#)的物理研究活动中被发明的 j.mp/2cwjnPn #中文推


Capacitative touch screen was invented at @CERN j.mp/2cwjnPn


#Gas_constant and #Boltzmann_constant are constants of proportionality that relates the energy scale to the temperature scale in #physics.


If you fold a piece of paper 42 times, the thickness is larger than Earth-Moon distance: j.mp/1RGJ6mc


US NIST (@usnistgov) has a nice short summary about measurement #uncertainty: j.mp/nistuncertainty #physics


In #physics, #disposition’s 1st to 6th order time #derivative are velocity, #acceleration, #jerk, #jounce, #crackle, #pop, respectively.


United States Trends

Loading...

Something went wrong.


Something went wrong.