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Consider points A ( α , 0 , 0 ) , B ( 0 , β , 0 ) , and C ( 0 , 0 , γ ) , with α , β , and γ positive real numbers.

  1. Determine the volume of the parallelepiped with adjacent sides O A , O B , and O C .
  2. Find the volume of the tetrahedron with vertices O , A , B , and C . ( Hint : The volume of the tetrahedron is 1 / 6 of the volume of the parallelepiped.)
  3. Find the distance from the origin to the plane determined by A , B , and C . Sketch the parallelepiped and tetrahedron.
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Let u , v , and w be three-dimensional vectors and c be a real number. Prove the following properties of the cross product.

  1. u × u = 0
  2. u × ( v + w ) = ( u × v ) + ( u × w )
  3. c ( u × v ) = ( c u ) × v = u × ( c v )
  4. u · ( u × v ) = 0
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Show that vectors u = 1 , 0 , −8 , v = 0 , 1 , 6 , and w = −1 , 9 , 3 satisfy the following properties of the cross product.

  1. u × u = 0
  2. u × ( v + w ) = ( u × v ) + ( u × w )
  3. c ( u × v ) = ( c u ) × v = u × ( c v )
  4. u · ( u × v ) = 0
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Nonzero vectors u , v , and w are said to be linearly dependent if one of the vectors is a linear combination of the other two. For instance, there exist two nonzero real numbers α and β such that w = α u + β v . Otherwise, the vectors are called linearly independent . Show that u , v , and w are coplanar if and only if they are linear dependent.

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Consider vectors u = 1 , 4 , −7 , v = 2 , −1 , 4 , w = 0 , −9 , 18 , and p = 0 , −9 , 17 .

  1. Show that u , v , and w are coplanar by using their triple scalar product
  2. Show that u , v , and w are coplanar, using the definition that there exist two nonzero real numbers α and β such that w = α u + β v .
  3. Show that u , v , and p are linearly independent—that is, none of the vectors is a linear combination of the other two.
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Consider points A ( 0 , 0 , 2 ) , B ( 1 , 0 , 2 ) , C ( 1 , 1 , 2 ) , and D ( 0 , 1 , 2 ) . Are vectors A B , A C , and A D linearly dependent (that is, one of the vectors is a linear combination of the other two)?

Yes, A D = α A B + β A C , where α = −1 and β = 1 .

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Show that vectors i + j , i j , and i + j + k are linearly independent—that is, there exist two nonzero real numbers α and β such that i + j + k = α ( i + j ) + β ( i j ) .

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Let u = u 1 , u 2 and v = v 1 , v 2 be two-dimensional vectors. The cross product of vectors u and v is not defined. However, if the vectors are regarded as the three-dimensional vectors u ˜ = u 1 , u 2 , 0 and v ˜ = v 1 , v 2 , 0 , respectively, then, in this case, we can define the cross product of u ˜ and v ˜ . In particular, in determinant notation, the cross product of u ˜ and v ˜ is given by

u ˜ × v ˜ = | i j k u 1 u 2 0 v 1 v 2 0 | .

Use this result to compute ( i cos θ + j sin θ ) × ( i s i n θ j c o s θ ) , where θ is a real number.

k

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Consider points P ( 2 , 1 ) , Q ( 4 , 2 ) , and R ( 1 , 2 ) .

  1. Find the area of triangle P , Q , and R .
  2. Determine the distance from point R to the line passing through P and Q .
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Determine a vector of magnitude 10 perpendicular to the plane passing through the x -axis and point P ( 1 , 2 , 4 ) .

0 , ± 4 5 , 2 5

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Determine a unit vector perpendicular to the plane passing through the z -axis and point A ( 3 , 1 , −2 ) .

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Consider u and v two three-dimensional vectors. If the magnitude of the cross product vector u × v is k times larger than the magnitude of vector u , show that the magnitude of v is greater than or equal to k , where k is a natural number.

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[T] Assume that the magnitudes of two nonzero vectors u and v are known. The function f ( θ ) = u v sin θ defines the magnitude of the cross product vector u × v , where θ [ 0 , π ] is the angle between u and v .

  1. Graph the function f .
  2. Find the absolute minimum and maximum of function f . Interpret the results.
  3. If u = 5 and v = 2 , find the angle between u and v if the magnitude of their cross product vector is equal to 9 .
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Questions & Answers

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sammie Reply
physiological Psychology
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How can I develope my cognitive domain
Amanyire Reply
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Dakolo Reply
Communication is effective because it allows individuals to share ideas, thoughts, and information with others.
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Every time someone flushes a toilet in the apartment building, the person begins to jumb back automatically after hearing the flush, before the water temperature changes. Identify the types of learning, if it is classical conditioning identify the NS, UCS, CS and CR. If it is operant conditioning, identify the type of consequence positive reinforcement, negative reinforcement or punishment
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Skinner skipped the whole unconscious phenomenon and rather emphasized on classical conditioning
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nature is an hereditary factor while nurture is an environmental factor which constitute an individual personality. so if an individual's parent has a deviant behavior and was also brought up in an deviant environment, observation of the behavior and the inborn trait we make the individual deviant.
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interpersonal relationships
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Source:  OpenStax, Calculus volume 3. OpenStax CNX. Feb 05, 2016 Download for free at http://legacy.cnx.org/content/col11966/1.2
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