answer) its given the earth rotates 360o in 24 hr
so in 1 hour the earth rotates=360/24=15o
so in 10 hr=15*10=150o
so the answer is 150 degrees.
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Calculate Tr, T. and N(r, θ) for the parametrized surface at the given point. | I θ . r ., G(r, θ)-(r cos(9), r sin(θ), 1-r2); 16' 4 6' 4 6' 4 Find the equation of the tangent plane to the surface at that point.
Calculate Tr, T. and N(r, θ) for the parametrized surface at the given point. | I θ . r ., G(r, θ)-(r cos(9), r sin(θ), 1-r2); 16' 4 6' 4 6' 4 Find the equation...
12. (True/False) (a) Let AE Rm*n . Then R(A) (b) Let AERm*n. Then N(A) is isomorphic to N(AT) (c) We define < A. B > = Tr (BTA ) where A, B E Rnxn . is isomorphic to R(A Then 〈 . , . 〉 is an inner product on Rmxn. (d) Consider a periodic-function space V with period of 1 sec. Define an inner product on V by <f,a>= f(t )a (t ) dt. Then cos 2 π t...
Please explain why. Thank you.
(5%) The following signals r t) is sanpled periodically to obtained the discrete-time signal [n. For each of the given sampling rates in F, Hz or in T period, (i) determine the spectrum x(eM) of x[n]; (ii) plot its magnitude and phase as a function of w in and as a function of sampling frequency Fs in HZ; and (iii explain whether e(t) can be recovered from rn] (a) re(t) 8 +12e-3207e-j0(+), with sampling rate...
6. Assume that an ideal silicon p-njunction has ND-10'scrn". N-1016 cm-3, t/tel 0%, and a device area of 1.2x10 cm2. De-21 cm/sec, D-10 cm/sec, G 10 cmsn-1010 cm-3, Es-1.05 101 F/em. (20 pts). Assume an ideal solar cell at 300K. IV characteristics can be given by J Js ekT 1)-Isc under the illumination. (20 pts) (a) Calculate the Jsc (15 pts)
6. Assume that an ideal silicon p-njunction has ND-10'scrn". N-1016 cm-3, t/tel 0%, and a device area of 1.2x10...
T 154.8 9 20 B C E F G H K L M N O R S 1 Learning Activity -- Facility Location by the Gravity Method 2 Instructions: 3 Latitude Longitude 1) To start the computations, you'll need to compute the SUM of the population shown in Column D. 4 City (LAT) (LON) Population (1,000) p*Lat P*Lon 2) Compute each city's "Population x Latitude" (column E). 5 1 16.6 1655 3) Compute each city's "Population x Longitude" (column F)....
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