The differential equation below models

  1. The differential equation below models the temperature of a 87°C cup of coffee in a 17°C room, where it is known that the
    1. answers icon 3 answers
    2. alex asked by alex
    3. views icon 6,824 views
  2. The differential equation below models the temperature of an 87°C cup of coffee in a 19°C room, where it is known that the
    1. answers icon 1 answer
    2. Alan asked by Alan
    3. views icon 395 views
  3. The population of a bacteria culture increases at the rate of 3 times the square root of the present population.A. Model the
    1. answers icon 3 answers
    2. lovejoy asked by lovejoy
    3. views icon 1,911 views
  4. The maximum number of arbitrary constants is equal toa. Number of derivatives in the differential equation b. Degree of
    1. answers icon 1 answer
    2. Rin asked by Rin
    3. views icon 870 views
  5. Solve the differential equation dy/dx = -xe^y and determine the equation of the curve through P(1,2)I tried solving the
    1. answers icon 4 answers
    2. Robert asked by Robert
    3. views icon 1,225 views
  6. Find the general solution to the differential equation that models the statement:"The rate of change of P with respect to x is
    1. answers icon 2 answers
    2. Dea asked by Dea
    3. views icon 971 views
  7. consider the differential equationd^3x/dt^3 - 9(d^2x/dt^2)+ 27(dx/dt) -27x = c0s t +sin t + te^(3t) a) show that characteristic
    1. answers icon 1 answer
    2. thigan asked by thigan
    3. views icon 907 views
  8. Consider the differential equation given by dy/dx = xy/2.A. Let y=f(x) be the particular solution to the given differential
    1. answers icon 2 answers
    2. Anonymous asked by Anonymous
    3. views icon 5,722 views
  9. Consider the differential equation dy/dt=y-ta) Determine whether the following functions are solutions to the given differential
    1. answers icon 3 answers
    2. Stacey asked by Stacey
    3. views icon 1,882 views
  10. Verify that the formula u(t)=Acos(ωo*t+Φ) is a solution to the differential equation for the mass on a spring, by plugging
    1. answers icon 1 answer
    2. Anonymous asked by Anonymous
    3. views icon 3,246 views