Respuesta :
A = horizontal displacement of the humming bird = 1.2 m
B = vertical displacement of the humming bird = 1.4 m
C = net displacement of the humming bird from initial to final position = ?
In the triangle drawn , Using Pythagorean theorem
C = ā(A² + B²)
inserting the values
C = ā(1.2² + 1.4²)
C = ā(1.44 + 1.96)
C = ā(3.4)
C = 1.4 m
Hence the net displacement of hummingbird comes out to be 1.4 m

Answer:
1.84m, 49.4ā° South west
Explanation:
Step 1: construct a right angled triangle from the birds displacement
āFrom the diagram uploaded; we calculate the resultant/total displacement (R) of the bird using Pythagoras theorem.
R² = 1.2² + 1.4²
R² = 3.4
R = ā3.4
R = 1.84 m
Step 2: calculate the direction of the bird's displacement
From vector diagram head-to-tail rule, we determine the cardinal direction;
From the diagram; [tex]tan(\alpha) = \frac{1.4}{1.2}[/tex]
[tex]tan(\alpha) = 1.1667[/tex]
[tex]\alpha =tan^{-1} 1.1667[/tex]
[tex]\alpha = 49.4^o[/tex]
Therefore the hummingbirds total displacement is 1.84m, 49.4ā° South west
