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Mathematical Symbols and Equations: 수학 기호 및 공식

• ab       “a multiplied by b” or “ab”

• a2       “a squared”

• b3       “b cubed”

• (a+b) 2 = a 2+2ab+b 2

    “The sum of a plus b squared equals a squared plus two ab plus b squared”

•      +      =

    “a over b plus c over d equals open parenthesis ad plus bc close parenthesis over bd”

    “a over b plus c over d equals the sum of ad plus bc over bd”

•                    “Ten to the minus nth power equals one over ten to the nth power”

•                    “Ten to the fifth power over ten to the seventh power equals ten to the minus
                     second power”

• x a x b = x (a + b)     “x to the a multiplied by x to the b equals x to the a plus b”

• x a y a = (xy) a        “x to the a multiplied by y to the a equals open parenthesis xy close
                          parenthesis to the a”

• (x a) b = x (ab)        “open parenthesis x to the a close parenthesis to the b equals x to the ab”
                                                                            the

• logb(1) = 0             “log b of one equals 0”

• logb(b) = 1             “log b of b equals 1”

• log39=2                 “log 3 of 9 equals 2”

• log255=0.5              “log 25 of 5 equals zero point five”

• logb(xy) = logb(x) + logb(y)                      “log b of xy equals log b of x plus log b of y”

• sin(x + y) = sin(x)cos(y) + cos(x)sin(y) “sine of x plus y equals sine of x cosine of y plus
                                             cosine of x sine of y”
Scientific Symbols and Equations: 과학 기호 및 공식

• Density = _____Mass (g)___
              Volume (cm3)
  D=m/v

    “Density equals mass in grams over volume in centimeters cubed
     Density                                                 cubed”
    “D equals m over v”

• Speed = ____Distance_(m)___
                 Time (s)
  S=d/t

    “Speed equals distance in meters over time in seconds
                                                  seconds”
    “S equals d over t”

• Force = Mass(kg) x Acceleration(m/ 2)
                     Acceleration(m/sec
  F=ma

    “Force equals mass in kilograms times acceleration in meters over second squared
     Force                                                                   squared”
    “F equals ma”

• Ohm’s Law
   Amperes(current) = ____Volts____
                       Ohms(resistance)
                       Ohms(resistance
   I=V/R

     “Ohm’s Law states that amperes equals volts over ohms
            s                                         ohms”
     “I equals V over R”

• Kinetic Energy



      Ek= kinetic energy of object
      m = mass of object
      v= speed of object

    “Kinetic Energy equation states that Ek equals one half m v-squared,
     Kinetic
     where Ek equals kinetic energy of the object; m, mass of the object; and v, speed of the
     object”


• This is a calculus-based class and I expect everyone to know at least the rudiments of
                       based
differential calculus. What's a function, what's a derivative, what's a second derivative how
                     .                                                         derivative,
to take derivatives of elementary functions, how to do elementary integrals
                                                                   integrals.
• Newtonian   mechanics is our first topic. Newtonian mechanics has two parts. The plan is to
predict the future given the present. That's what we always do. So the question is, "What do
you mean by the future? What do you mean by the present?

• Now  what is the kinetic energy that you're summing up over each particle? It's ½mv2. Has
 everybody seen this before? Okay, so that's the sum of classical kinetic energy over all the
 particles of interest in the problem.

• How does  sin(ax) look different from sin(x)? Suppose it's sin(2x). Here's sin(x). How does
 sin(2x) look? It has a shorter wavelength.

• Typically the atoms are vibrating by about 0.05 angstroms in the crystal. When they're in
  their lowest possible energy state they vibrate by that much, right?

• We have here the (Z/a0)3/2; √2/2; and e(-ρ/2). When you square it, what are you going to get,
  for e (-ρ/2)? What is e(-ρ/2) squared?
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이공계 영어강의 표현

  • 1.
  • 2. Mathematical Symbols and Equations: 수학 기호 및 공식 • ab “a multiplied by b” or “ab” • a2 “a squared” • b3 “b cubed” • (a+b) 2 = a 2+2ab+b 2 “The sum of a plus b squared equals a squared plus two ab plus b squared” • + = “a over b plus c over d equals open parenthesis ad plus bc close parenthesis over bd” “a over b plus c over d equals the sum of ad plus bc over bd” • “Ten to the minus nth power equals one over ten to the nth power” • “Ten to the fifth power over ten to the seventh power equals ten to the minus second power” • x a x b = x (a + b) “x to the a multiplied by x to the b equals x to the a plus b” • x a y a = (xy) a “x to the a multiplied by y to the a equals open parenthesis xy close parenthesis to the a” • (x a) b = x (ab) “open parenthesis x to the a close parenthesis to the b equals x to the ab” the • logb(1) = 0 “log b of one equals 0” • logb(b) = 1 “log b of b equals 1” • log39=2 “log 3 of 9 equals 2” • log255=0.5 “log 25 of 5 equals zero point five” • logb(xy) = logb(x) + logb(y) “log b of xy equals log b of x plus log b of y” • sin(x + y) = sin(x)cos(y) + cos(x)sin(y) “sine of x plus y equals sine of x cosine of y plus cosine of x sine of y”
  • 3. Scientific Symbols and Equations: 과학 기호 및 공식 • Density = _____Mass (g)___ Volume (cm3) D=m/v “Density equals mass in grams over volume in centimeters cubed Density cubed” “D equals m over v” • Speed = ____Distance_(m)___ Time (s) S=d/t “Speed equals distance in meters over time in seconds seconds” “S equals d over t” • Force = Mass(kg) x Acceleration(m/ 2) Acceleration(m/sec F=ma “Force equals mass in kilograms times acceleration in meters over second squared Force squared” “F equals ma” • Ohm’s Law Amperes(current) = ____Volts____ Ohms(resistance) Ohms(resistance I=V/R “Ohm’s Law states that amperes equals volts over ohms s ohms” “I equals V over R” • Kinetic Energy Ek= kinetic energy of object m = mass of object v= speed of object “Kinetic Energy equation states that Ek equals one half m v-squared, Kinetic where Ek equals kinetic energy of the object; m, mass of the object; and v, speed of the object” • This is a calculus-based class and I expect everyone to know at least the rudiments of based differential calculus. What's a function, what's a derivative, what's a second derivative how . derivative, to take derivatives of elementary functions, how to do elementary integrals integrals.
  • 4. • Newtonian mechanics is our first topic. Newtonian mechanics has two parts. The plan is to predict the future given the present. That's what we always do. So the question is, "What do you mean by the future? What do you mean by the present? • Now what is the kinetic energy that you're summing up over each particle? It's ½mv2. Has everybody seen this before? Okay, so that's the sum of classical kinetic energy over all the particles of interest in the problem. • How does sin(ax) look different from sin(x)? Suppose it's sin(2x). Here's sin(x). How does sin(2x) look? It has a shorter wavelength. • Typically the atoms are vibrating by about 0.05 angstroms in the crystal. When they're in their lowest possible energy state they vibrate by that much, right? • We have here the (Z/a0)3/2; √2/2; and e(-ρ/2). When you square it, what are you going to get, for e (-ρ/2)? What is e(-ρ/2) squared?
  • 5. Attribution-NonCommercial-NoDerivs 3.0 Unported You are free: to Share - to copy, distribute and transmit the work Under the following conditions: Attribution. You must attribute the work in the manner specified by the author or licensor (but not in any way that suggests that they endorse you or your use of the work). Noncommercial. You may not use this work for commercial purposes. No Derivative Works. You may not alter, transform, or build upon this work. For any reuse or distribution, you must make clear to others the license terms of this work. The best way to do this is with a link to this web page. Any of the above conditions can be waived if you get permission from the copyright holder. Nothing in this license impairs or restricts the author’s moral rights. The document was created by CC PDF Converter