2) Let z = ex’y, a ex?y, x = Vuv, y = f(v), f(1) = 1 and f'(1) = 1/2. Find i) at the point where u = 4 and v = 1. az and ii) 2) 2 = er’y, r = Vuv, y = f(v), f(1) = 1 ve f'(1) = 1/2 ise, i) Su ve ii) si 'nin u = 4 ve v = 1 olduğu noktadaki değerlerini hesaplayınız. (1) 4e*; (ii) 4e + 24 (1) 4e4; (tr)...
using only ⊃I, ⊃E, ≡I, ≡E, ~I ,
~E, &I, &E, vI, vE, R
Q 2: Construct a derivation for each of the following theorems. (30%) (a) NN AV ~ A (b) (A » (B) C)) = ((A) B) » (A » C)) (c) (A ? B) V (B) A) Q 3: Show the equivalence of the following pairs of sentences (40%) (a) ~ (A&B) :~ AV ~ B (b) ~ (AV B) :~ A& Extra Qi Construct a derivation...
0 2 0. Prove that a 0 or v Suppose a e F, ve V, and av 11
1. Suppose that u, ve V and ||_ || = || v || = 1 and (u, v) = 1. Prove that u = v. Hint: Compute || u – v||2.
Prove Valid: 1. (z)(Pz --> Qz) 2. (Ex) [(Oy • Py) --> (Qy • Ry)] 3. (x) (-Px v Ox) 4. (x) (Ox --> -Rx) ... :. (Ey) (-Py v -Oy) 1. (x) [(Fx v Hx) --> (Gx • Ax)] 2. -(x) (Ax • Gx) ..... :. (Ex) (-Hx v Ax) 1. (x) (Px --> [(Qx • Rx) v Sx)] 2. (y) [(Qy • Ry) --> - Py] 3. (x) (Tx --> -Sx) .... :. (y) (Py --> -Ty)
Determine the node voltages (a) va, (b) V() (d) va, (e) ve () v and (9) vg for the circuit shown in the figure below. Assume that the operational amplifier is ideal 1002 100 12 23
Let XN(0, 1) and Y eX. (X) (a) Find E[Y] and V(Y). (b) Compute the approximate values of E[Y] and V(Y) using E(X)(u)+"()VX) and V((X))b(u)2V(X). Do you expect good approximations? Justify your an- Swer
Let XN(0, 1) and Y eX. (X) (a) Find E[Y] and V(Y). (b) Compute the approximate values of E[Y] and V(Y) using E(X)(u)+"()VX) and V((X))b(u)2V(X). Do you expect good approximations? Justify your an- Swer
make a chi square data.
body is normal and wing is mutant
E=not ebony
e=ebony
V=not vestigial
v=vestigial
Ve Ve ve ve VE ve 3 Men Eb I Not 3,3
Assignment Six Q1. (Source-free RC) Let v.(0)-15 V. Find ve, v, and i, for t>0 8Ω
RR 10 breaths/min, I/E ratio is 1:2 Total Cycle Time:_ IT: ET: RR 12 breaths/min, VE ratio is 1:4 Total Cycle Time: IT: ET: RR 20 breaths/min, VE ratio is 1:1 Total Cycle Time: IT: ET: Set RR 15 breaths/min, set Vt 0.82L, flow rate 60 L/min TCT- IT= ET= I/E ratio = Set RR 13 breaths/min, set Vt 750 mL, flow rate 75 L/min VE = TCT IT= ET I/E ratio =