(a)
The number of ways to award the prizes if there are no restrictions.
(b)
The number of ways to award the prizes if ticket number 47 wins the grand prize.
(c)
The number of ways to award the prizes if ticket number 47 wins one of the prizes.
(d)
The number of ways to award the prizes if ticket number 47 does not win a prize.
(e)
The number of ways to award the prizes if ticket number 19 and 47 both win prizes.
(f)
The number of ways to award the prizes if ticket number 19, 47 and 73 all win prizes.
(g)
The number of ways to award the prizes if ticket number 19, 47, 73 and 97 all win prizes.
(h)
The number of ways that none of the people holding ticket 19, 47, 73 and 97 wins a prize.
(i)
The number of ways to award the prizes if the grand prize winner is holding ticket number 19, 47, 73 and 97.
(j)
The number of ways to award the prizes if the ticket number 19 and 47 win the prizes and the ticket number 73 and 97 do not win the prizes.
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Chapter 6 Solutions
Discrete Mathematics And Its Applications
- a. Given D = (1 2,6 4 )decode the following message: 32, 24, 42, 28, 24, 40, 50, 60, 132, 96, 12, 24 where the item in brackets is a 2*2 Matrix and the rows are separated by commasarrow_forwardMATLAB. Awnser written questions (*) in the comments. Null, Rank, and most functions outside of rref() and disp() are not allowed! Solutions must be given manually!arrow_forwardPLEASE ALL PARTS!!!arrow_forward
- Please refer belowarrow_forwardPlease refer belowarrow_forwardMatlab Do question #3 from Section 1.10 Exercises of the textbook (theproblem about Mac and Cheese). For each part, be sure to explicitly give the appropriate system ofequations (as a comment) before entering the appropriate matrices into MATLAB. Show all of yournecessary MATLAB computations.arrow_forward
- PLEASE ANSWER ALL PARTSarrow_forwardPLEASE ANSWER BOTH PARTSarrow_forward(1) (16 points) Let f(x, y) = 2x + 3y + In(xy) (a) (6 points) Calculate the gradient field Vf(x, y) and determine all points (x, y) where ▼f(x, y) = (0, 0). (b) (4 points) Calculate the second derivative matrix D²f(x,y).arrow_forward
- Let f(x, y) = 2x + 3y+ In(xy)arrow_forward(3) (16 points) Let D = [0, π/2] × [0, 7/6]. Define T: DCR2 R3 by → T(0, 4) = (2 sin cos 0, 2 sin sin 0, 2 cos x). Let S be the surface parametrized by T. (a) (8 points) Determine the normal, call it n(p), for the tangent plane TS at an arbitrary point p = T(0, 4). (b) (4 points) Show that n(p) parallel to the position vector T(0, 4) determined by p? Do the two vectors have the same direction or opposite direction? Explain. (c) (4 points) At which points p, if any, is TS parallel to the xy-plane?arrow_forward5:19 0 TEMU TEMU >>> 49 95% University at Albany - Single Sig... L Lumen OHM D2L HW4- AMAT100-Precal HW4 Score: 12.99/21 Answered: 18/21 × Question 16 Score on last try: 0 of 1 pts. See Details for more. > Next question Get a similar question You can retry this question below Find the inverse for the function k(x) = √√7x+12 k-¹(x) = Question Help: Video Message instructor Submit Question esc ||| F1 80 ୮ (x) = tarrow_forward
- Discrete Mathematics and Its Applications ( 8th I...MathISBN:9781259676512Author:Kenneth H RosenPublisher:McGraw-Hill EducationMathematics for Elementary Teachers with Activiti...MathISBN:9780134392790Author:Beckmann, SybillaPublisher:PEARSON
- Thinking Mathematically (7th Edition)MathISBN:9780134683713Author:Robert F. BlitzerPublisher:PEARSONDiscrete Mathematics With ApplicationsMathISBN:9781337694193Author:EPP, Susanna S.Publisher:Cengage Learning,Pathways To Math Literacy (looseleaf)MathISBN:9781259985607Author:David Sobecki Professor, Brian A. MercerPublisher:McGraw-Hill Education
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