A velocity vector 47 ∘ above the positive x-axis has a y-component of 11 m/s .
What is the value of its x-component?
A velocity vector 47 ∘ above the positive x-axis has a y-component of 11 m/s ....
PROBLEM 1 A velocity vector 48 degrees above the positive x-axis has a y-component of 12 m/s. What is the value of its x-component? PROBLEM 2 Two vectors, S and T, have the components shown in the table. What angle does the resultant of these two vectors make with the +x-axis? x component -3.5 m 0.00 m y component 4.5 m -6.5 m
A vector has an x-component of 15.0 m/s and a y-component of -5.0 m/s. E.Determine the magnitude of the vector (include units with answer) What is the angle of the vector of Part E measured counterclockwise (CCW) from the positive x-axis? Answer must within 0.5 degrees (include units with answer) F. A vector has an x-component of -13.8 m/s and a y-component of -4.6 m/s. What is the angle of the vector measured counterclockwise (CCW) from the positive x-axis? Answer...
5。00 The x-component of a velocity vector that has an angle of 37° to the +x-axis has a magnitude of 4.8 m/s. (a) What is the magnitude of the velocity? (b) What is the magnitude of the y-component of the velocity?
Vector A has a magnitude of 4 m and points 30° above the positive x axis, vector B has a magnitude of 6 m and points 60° below the positive x axis. The vector R-A + B (sin 30°= cos 60°= 0.5; sin 60°-cos 30°= 0.866) 3. The component of R along the x axis is: A. 3.46 m B. 3.2 m C. 0.46 m 4a2 O. ))6.46 m E. None of the above 4. The component of R along...
Vector A has a negative x component 3.30 units in length and a positive y component 2.02 units in length (a) Determine an expression for A in unit-vector notation. j) units (b) Determine the magnitude and direction of A magnitude direction unit(s) o counterclockwise from the positive x axis (e) what vector B when added to vector A, gives a resultant vector with no x component and a negative y component 4.14 units in length? j) units
Jack and Jill ran up the hill at 3.1 m/s. The horizontal component of Jill's velocity vector was 2.0 m/s. Part A What was the angle of the hill? Express your answer in degrees. O AQ R O 2 ? Submit Request Answer Part B What was the vertical component of Jill's velocity? Express your answer with the appropriate units. Ii ? uÅR 0,= Value O 2 Units Vy = Submit Request Answer A velocity vector 45 above the positive...
A) Find x-component of vector d⃗ =(100 m , 44 ∘ below + x-axis). B) Find y-component of vector d⃗ =(100 m , 44 ∘ below + x-axis). C) Find x-component of vector v⃗ =(310 m/s , 27 ∘ above + x-axis). D) Find y-component of vector v⃗ =(310 m/s , 27 ∘ above + x-axis). E) Find x-component of vector a⃗ =(5.0 m/s2 , - y-direction). F) Find y-component of vector a⃗ =(5.0 m/s2 , - y-direction). Please expain...
1) What are the x and y components of this vector?
x-component:
2) y-component
3)The x component of a vector is 12.5 m and the y component of a
vector is 25 m. What is the magnitude and direction (with respect
to the positive x-axis) of this vector?
magnitude:
4)direction:
A vector has a magnitude of A = 16.5 m and makes an angle of 0 = 5.4 ° with the negative x-axis. A
Part A A velocity vector has a magnitude of 21.0 m/s. Ifits y component is-10.0 m/s, what are the possible values of its z component? Express your answer in meters per second to three significant figures. m/s Submit Request Answer vide Feedback DOLL
The velocity vector V1 has a magnitude of 5.0 m/s and is directed along the +x-axis. The velocity vector V2 has a magnitude of 4.0 m/s. The sum of the two is V3, so that V3 = V1+V2 True False The magnitude of V3 can be 0.0 True False The magnitude of V3 can be -8.0 m/s True False The magnitude of V3 can be 7.0 m/s True False The x-component of V3 can be 4.0 m/s True False The magnitude of V3 can be...