menu-iconExamlexExamLexServices

Discover

Ask a Question
  1. All Topics
  2. Topic
    Mathematics
  3. Study Set
    Calculus A Complete Course
  4. Exam
    Exam 18: Differential Forms and Exterior Calculus
  5. Question
    Find All Values of the Real Number\(\alpha\) Such That the 2-Volume of the 2-Parallelogram in Spanned
Solved

Find All Values of the Real Number α\alphaα Such That the 2-Volume of the 2-Parallelogram in Spanned

Question 37

Question 37

Multiple Choice

Find all values of the real number α\alphaα such that the 2-volume of the 2-parallelogram in  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±   spanned by the vectors  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±   = (2, 0, 0, 1) and  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±   = (-2, α\alphaα , 8, 3) is equal to 22  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±   .


A) α\alphaα = ± 10
B) α\alphaα = ± 2  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±
C) α\alphaα = ± 2  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±
D) α\alphaα = ±  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±
E) α\alphaα = ±  Find all values of the real number  \alpha  such that the 2-volume of the 2-parallelogram in   spanned by the vectors   = (2, 0, 0, 1)  and   = (-2,  \alpha  , 8, 3)  is equal to 22   . A)   \alpha = ± 10 B)   \alpha   = ± 2   C)   \alpha  = ± 2   D)  \alpha  = ±   E)  \alpha  = ±

Correct Answer:

verifed

Verified

Unlock this answer now
Get Access to more Verified Answers free of charge

Related Questions

Q32: Find the 4-volume of the 4-parallelogram in

Q33: Let<img src="https://d2lvgg3v3hfg70.cloudfront.net/TB9661/.jpg" alt="Let = 9dx -

Q34: Let <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB9661/.jpg" alt="Let =

Q35: Let <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB9661/.jpg" alt=" Let

Q36: Let σ = d <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB9661/.jpg" alt="Let

Q38: Integrate the differential (n -1)-form

Q39: One way to describe a smooth k-manifold

Q40: Prove that every smooth exterior derivative is

Q41: Let <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB9661/.jpg" alt=" Let

Q42: Let the differential 2-form <img src="https://d2lvgg3v3hfg70.cloudfront.net/TB9661/.jpg" alt="Let

Examlex

ExamLex

About UsContact UsPerks CenterHomeschoolingTest Prep

Work With Us

Campus RepresentativeInfluencers

Links

FaqPricingChrome Extension

Download The App

Get App StoreGet Google Play

Policies

Privacy PolicyTerms of ServiceHonor CodeCommunity Guidelines

Scan To Download

qr-code

Copyright © (2025) ExamLex LLC.

Privacy PolicyTerms Of ServiceHonor CodeCommunity Guidelines