X~U[-2,4] Find Xc so that Prob(X>Xc) = 0.85
NOTE: USE 4 DECIMAL DIGITS.
X~U[-2,4] Find Xc so that Prob(X>Xc) = 0.85 NOTE: USE 4 DECIMAL DIGITS.
X~N(-1,4). Find C so that Prob(miu - C < X <= miu + C) = 0.99 NOTE: WRITE YOUR ANSWER WITH 4 DECIMAL DIGITS. DO NOT ROUND UP OR DOWN.
X~Normal(6,49). Find the probabilities of the following events: a. Prob(X ≤ 4). b. Prob(X > 7). c. Prob(4 < X ≤ 7).
Find the current (I) by the node voltage method.
Note: At least three digits should be taken into account after the
comma.
18 V20 + XL 4 k.2 Xc 8 ka R I + V 30 V 253.13° 4k02 + V 5 mA2300 R 3 ΚΩ akımını düğüm gerilimleri yöntemi ile bulunuz.
Use a graphing utility with vector capabilities to find u x v. u = (-4, 2, 4), v = (2, 4, 2) Show that u x v is orthogonal to both u and v. (u x V) u = (u x V): V =
Find the average value of the function f(x) = x3 + 4 on the interval [2,4].
Problem 4. Find a function v(x) so that the substitution y(x) = u(x)+(x) transforms the differential equation y" + P(x)y' + Q(x)y = 0 into an equation for u of the form u" + f(x)u = 0. Write the function f in terms of P and Q. The last equation is called the normal form of a homogeneous linear second order equation.
Plese use R-Studio to answer this question. qbinom(p, size, prob) gives the smallest x value so that the probability of being less than or equal to x is at least p. Try the following: pbinom(0:10, size=10, prob=0.5) ; qbinom(0.75, size=10, prob=0.5) What is the value for which 90 percent of the probability is smaller than it, when you flip a fair coin 20 times?
For a standard normal distribution, find: P(z < -0.85) Express the probability as a decimal rounded to 4 decimal places. . Incorrect Get help: VideoVideo Box 1: Enter your answer as an integer or decimal number. Examples: 3, -4, 5.5172 Enter DNE for Does Not Exist, oo for Infinity
4. Use the method of eigenfunction expansion to find the solution of the IBVP ut (x, t) u (0,t) u (x, 0) ura' (a, t) + 2t sin (2na:) , 0 < x < 1, 0, u(1,t)=0, t > 0, sin(2π.r)-5 sin (4π.r) , 0 < x < 1. t > 0, = = =
4. Use the method of eigenfunction expansion to find the solution of the IBVP ut (x, t) u (0,t) u (x, 0) ura' (a, t)...
mass particle mass 239 94 Pu 239.0522 u on 1.0086649 u 0 10 -4 5.4858 x 10 u He 4.00260 297 Cm 242.0588 u 0 -4 5.4858 x 10 u Now consider the following nuclear reaction: He 29Cm + on 239 + -. O released absorbed x ? is energy released or absorbed by this reaction? neither released nor absorbed O I need more information to decide If you said energy was released or absorbed, calculate how much energy is...