1answer.
Ask question
Login Signup
Ask question
All categories
  • English
  • Mathematics
  • Social Studies
  • Business
  • History
  • Health
  • Geography
  • Biology
  • Physics
  • Chemistry
  • Computers and Technology
  • Arts
  • World Languages
  • Spanish
  • French
  • German
  • Advanced Placement (AP)
  • SAT
  • Medicine
  • Law
  • Engineering
Anton [14]
3 years ago
10

Sayuri is a new, eight-year-old Japanese girl in the neighborhood. When Martha, her teacher at school, interacted with Sayuri, s

he noticed that some of Sayuri’s habits differ from those of the other children. What difference is Martha likely to have noticed?
A. that Sayuri is shy
B. that Sayuri’s intelligence is way beyond her years
C. that Sayuri shows disregard and disrespect toward other cultures
D. that Sayuri is attached to her grandparents and is respectful towards the elderly E. that Sayuri is extremely proactive
Physics
2 answers:
Leona [35]3 years ago
6 0
I think the answer to this question is A because she acts differently from the other children
Leokris [45]3 years ago
3 0

Answer:

A. that Sayuri is shy

Explanation:

Sayuri who is originally from Japan and had shifted to a new place. She is a child, a eight year old child. And she had joined a new school in the her new neighbourhood where she is new to the school and new to the classmates. She will see unknown faces and will have to make new friends. So it is obvious that Sayuri feels shy and hesitate to interact with her new friends and teachers. She will not be open to them rather remain introvert for sometimes.

Therefore, option A is correct that Sayuri is shy.

You might be interested in
A pendulum clock is taken to the moon (g = 1.6 N/kg). How long must the pendulum be in order for the clock to
mamaluj [8]

Answer:

0.041 m

Explanation:

T = 2π√(L/g)

1 s = 2π√(L / (1.6 N/kg))

L = 0.041 m

4 0
3 years ago
In the long jump, an athlete launches herself at an angle above the ground and lands at the same height, trying to travel the gr
NikAS [45]

A) 2.64t

B) 2.64h

C) 2.64D

Explanation:

A)

The motion of the athlete is equivalent to the motion of a projectile, which consists of two independent motions:

- A uniform motion (constant velocity) along the horizontal direction

- A uniformly accelerated motion (constant acceleration) along the vertical direction

The time of flight of a projectile can be found from the equations of motion, and it is found to be

t=\frac{2u sin \theta}{g}

where

u is the initial speed

\theta is the angle of projection

g is the acceleration due to gravity

In this problem, when the athlete is on the Earth, the time of flight is t.

When she is on Mars, the acceleration due to gravity is:

g'=0.379 g

where g is the acceleration due to gravity on Earth. Therefore, the time of flight on Mars will be:

t'=\frac{2usin \theta}{g'}=\frac{2u sin \theta}{0.379g}=\frac{1}{0.379}t=2.64t

B)

The maximum height reached by a projectile can be also found using the equations of motion, and it is given by

h=\frac{u^2 sin^2\theta}{2g}

where

u is the initial speed

\theta is the angle of projection

g is the acceleration due to gravity

In this problem, when the athlete is on the Earth, the maximum height is h.

When she is on Mars, the acceleration due to gravity is:

g'=0.379 g

where g is the acceleration due to gravity on Earth. So, the maximum height reached on Mars will be:

h'=\frac{u^2 sin^2\theta}{2g'}=\frac{u^2 sin^2\theta}{(0.379)2g}=\frac{1}{0.379}h=2.64h

C)

The horizontal distance covered by a projectile is also found from the equations of motion, and it is given by

D=\frac{u^2 sin(2\theta)}{g}

where:

u is the initial speed

\theta is the angle of projection

g is the acceleration due to gravity

In this problem, when the athlete is on the Earth, the horizontal distance covered is D.

When she is on Mars, the acceleration due to gravity is:

g'=0.379 g

where g is the acceleration due to gravity on Earth. Therefore, the horizontal distance reached on Mars will be:

D'=\frac{u^2 sin(2\theta)}{g'}=\frac{u^2 sin(2\theta)}{(0.379)g}=\frac{1}{0.379}D=2.64D

7 0
3 years ago
What will the stopping distance be for a 2,000-kg car if -2,000 N of force are applied when the car is traveling 20 m/s?
astraxan [27]

Answer is B- 200 m

Given:

m (mass of the car) = 2000 Kg

F = -2000 N

u(initial velocity)= 20 m/s.

v(final velocity)= 0.

Now we know that

<u>F= ma</u>

Where F is the force exerted on the object

m is the mass of the object

a is the acceleration of the object

Substituting the given values

-2000 = 2000 × a

a = -1 m/s∧2

Consider the equation

<u>v=u +at</u>

where v is the initial velocity

u is the initial velocity

a is the acceleration

t is the time

0= 20 -t

t=20 secs


s = ut +1/2(at∧2)

where s is the displacement of the object

u is the initial velocity

t is the time

v is the final velocity

a is the acceleration

s= 20 ×20 +(-1×20×20)/2

<u>s= 200 m</u>


3 0
3 years ago
Read 2 more answers
Jonas sees this symbol in a circuit diagram.
Alenkinab [10]

The circuit component the symbol represents is: C) Battery

3 0
3 years ago
Read 2 more answers
What type a medium is a ocean wave
andre [41]
Ocean waves travel through the medium called
"ocean water" or "salt water" or simply "water".
8 0
3 years ago
Read 2 more answers
Other questions:
  • You are asked to design a horizontal curve with a 40-degree central angle (' = 40) for a two-lane road with 11-ft lanes. the des
    14·1 answer
  • Which of these is NOT a vector quantity?
    6·1 answer
  • What is the claim evidence and reasoning, for the top one
    9·1 answer
  • If R1 is 2 ohms and R2 is 3 ohms and R3 is 5 ohms...what is total resistance?
    14·1 answer
  • A long, straight, horizontal wire carries a left-to-right current of 20 A. If the wire is placed in a uniform magnetic field of
    13·1 answer
  • This time, William Tell is shooting at an apple that hangs on a tree (Fig. 3.32). The apple is a horizontal distance of 20.0 m
    7·1 answer
  • An airplane wing is designed to make the air move
    8·1 answer
  • A ball is thrown vertically upwards with a velocity of 20 m s −1 from the top of a multistorey building of 25 m high. How high w
    8·1 answer
  • Một loa phát ra với cường độ âm là 40 (W/m2<br><br> ). Mức cường độ âm của loa thuộc phạm vi?
    6·1 answer
  • How could you increase the kinetic Energy of an object without changing<br> its mass or gravity? *
    6·1 answer
Add answer
Login
Not registered? Fast signup
Signup
Login Signup
Ask question!