Can someone help me with these please I would appreciate it

Can Someone Help Me With These Please I Would Appreciate It
Can Someone Help Me With These Please I Would Appreciate It

Answers

Answer 1

Answer:

  7) 5 m/s

  8) 1.5 m/s

  9) -9 m/s^2

  10) 2.2 m/s

  11) 5 s

Explanation:

These problems make use of the relations:

  a = ∆v/∆t

  d = 1/2at^2 . . . . acceleration to/from rest

  v^2 = 2ad . . . . . acceleration to/from rest

In each case, choose the formula appropriate to the question, fill in the given values, and solve for what's missing.

__

7) v^2 = 2ad

  v = √(2(9.8 m/s^2)(1.5 m)) = √(29.4 m^2/s^2) ≈ 5 m/s

__

8) d = 1/2at^2

  a = 2d/t^2 = 2(75 m)/(10 s)^2 = 1.5 m/s^2

__

9) a = ∆v/∆t

  a = (-45 m/s)/(5 s) = -9 m/s^2

__

10) a = ∆v/∆t

  ∆v = a·∆t = (0.09 m/s^2)(10 s) = 0.9 m/s

Vivian's final speed is the initial speed plus the change in speed:

  1.3 m/s + 0.9 m/s = 2.2 m/s

__

11) a = ∆v/∆t

  ∆t = ∆v/a = (0.50 cm/s -0.75 cm/s)/(-0.05 cm/s^2) = -.25/-.05 s = 5 s


Related Questions

What is the formula for the compound formed between Na and Se?

Answers

Answer:

gold

Explanation:

giving brainlist What is ONE modern example OR historical example of a country that had representative government

Answers

Answer:

Canada

Explanation:

how does radiant energy transfer energy?

Answers

Answer:

Radiant energy, energy that is transferred by electromagnetic radiation, such as light, X-rays, gamma rays, and thermal radiation, which may be described in terms of either discrete packets of energy, called photons, or continuous electromagnetic waves.

Explanation:

Mishael walks 30 meters East, turns around and walks 25 meters West, then turns again and walks 50 meters East. What is his displacement? Group of answer choices 5 meters East 105 meters East 5 meters West 55 meters East

Answers

Answer:

55 meters East

Explanation:

if you start at the origin, "add" 30 meters (going east #1), subtract 25 meters (going west #1), then add 50 meters (going east #2), you should get 55 meters East.

Hope this helps!

A cars momentum is p when it’s traveling with a velocity of v. If the velocity of that car doubles, what is the new momentum of the car

Answers

Answer:

2p

Explanation:

I just did it

Answer:

2p

Explanation: just did it in Edgen

Given the vector A with components Ax = 2.00, Ay = 6.00, the vector B with components Bx = 2.00, By = 22.00, and the vector D = A - B, calculate the magnitude and angel with the x axis of the vector D

Answers

Answer:

The magnitude of vector d is 16 and the angle with the x-axis is 270°

Explanation:

Operations With Vectors

Given two vectors in rectangular components:

[tex]\vec a=(ax,ay)\ ,\ \vec b=(bx,by)[/tex]

The sum of the vectors is:

[tex]\vec a+\vec b=(ax+bx,ay+by)[/tex]

The difference between the vectors is:

[tex]\vec a-\vec b=(ax-bx,ay-by)[/tex]

The magnitude of [tex]\vec a[/tex] is:

[tex]|\vec a|=\sqrt{ax^2+ay^2}[/tex]

The angle [tex]\vec a[/tex] makes with the horizontal positive direction is:

[tex]\displaystyle \tan\theta=\frac{ay}{ax}\\[/tex]

The question provides the vectors:

[tex]\vec a=(2,6)[/tex]

[tex]\vec b=(2,22)[/tex]

[tex]\vec d=\vec a-\vec b[/tex]

Calculate:

[tex]\vec d=(2,6)-(2,22)=(0,-16)[/tex]

The magnitude of [tex]\vec d[/tex] is:

[tex]|\vec d|=\sqrt{0^2+(-16)^2}=\sqrt{0+256}=16[/tex]

The angle is calculated by:

[tex]\displaystyle \tan\theta=\frac{-16}{0}[/tex]

The division cannot be calculated because the denominator is zero. We need to estimate the correct angle by looking at the components of the vector. Since the x-coordinate is zero and the y-coordinate is negative, the vector points downwards (south), thus the angle must be -90° or 270° if the range goes from 0° to 360°.

The magnitude of vector d is 16 and the angle with the x-axis is 270°

Different colors of light are associated with different wavelengths.

Answers

Answer:

yepp

Explanation:

you sure is right

A boat is going upstream at a force of 50N East and a current, on the stream, is moving West
at 37N. What is the force acting on the boat?

Answers

Answer:

23N

Explanation:

50-37 = 23

Students are studying the two-dimensional motion of objects as they move through the air. Specifically, they are examining the behavior of a sphere that is launched horizontally from a location above the floor with an initial velocity vo in the +3 direction, as shown in the figure. The students assume that the positive directions are along the sphere's initial velocity for horizontal motion and downward for vertical motion.

The horizontal displacement of the object from its starting point is x, and the vertical displacement of the object from its starting point is y. One of the students derives an equation for y in terms of xx and other quantities. After examining the equation, the student claims that y is proportional to x^2.

Required:
Derive an equation for the vertical coordinate y of the sphere as a function of x, v0, and physical constants, as appropriate.

Answers

Answer:

   y = - (½ g / v₀²)   x²

Explanation:

This is a projectile launch exercise where there is no acceleration on the x-axis so

        x = v₀ₓ t

        v₀ₓ = v₀ cos tea

        y = [tex]v_{oy}[/tex] t - ½ g t2

        v_{oy} = v₀ sin θ

as the sphere is thrown horizontally, the angle is tea = 0º, so the initial velocity remains

          v₀ₓ = v₀

           v_{oy} = 0

we substitute in our equations

          x = v₀ t

          y = - ½ g t²

we eliminate the time from these equations, we substitute the first in the second

      y = - ½ g (x / v₀)²

      y = - (½ g / v₀²)   x²

this is the equation of a parabola

The Problems: 1. Xavier starts at a position of 0 m and moves with an average speed of 0.50 m/s for 3.0 seconds. He normally moves faster than this but he'd just woken up. Determine his final position. 2. A hedgehog starts at a position of 0 m and moves with an average speed of 0.75 m/s for 4.0 s. Determine the final position of the hedgehog. 3. A tortoise starts at a position of 1.0 m and moves with an average speed of 1.25 m/s for 3.0 s, what is the final position of the tortoise? Cintia, in a 100 m race, has an average speed of 1.25 m/s. What was her race time? 5. Angel runs a marathon with an average speed of 5 miles/hour. How long did it take to finish?​

Answers

Answer:

(1). His final position is 1.5 m.

(2). The final position of the hedgehog is 3 m.

(3). The final position of the tortoise

(4). Her race time is 80 sec.

(5). It take to finish in 5 hr.

Explanation:

(1). Given that,

Initial position = 0 m

Average speed = 0.50 m/s

Time = 3.0 s

We need to calculate the final position

Using formula of average speed

[tex]v_{av}=\dfrac{x_{f}+x_{i}}{t}[/tex]

Where, [tex]x_{f}[/tex] = final position

[tex]x_{i}[/tex] = Initial position

t = total time

Put the value into the formula

[tex]0.50=\dfrac{x_{f}+0}{3.0}[/tex]

[tex]x_{f}=0.50\times3.0[/tex]

[tex]x_{f}=1.5\ m[/tex]

(2). Given that,

Initial position = 0 m

Average speed = 0.75 m/s

Time = 4.0 s

We need to calculate the final position

Using formula of average speed

[tex]v_{av}=\dfrac{x_{f}+x_{i}}{t}[/tex]

Put the value into the formula

[tex]0.75=\dfrac{x_{f}+0}{4.0}[/tex]

[tex]x_{f}=0.75\times4.0[/tex]

[tex]x_{f}=3\ m[/tex]

(3). Given that,

Average speed = 1.25 m/s

Time = 3.0 sec

Initial position = 1.0 m

We need to calculate the final position

Using formula of average speed

[tex]v=\dfrac{x_{f}+x_{i}}{t}[/tex]

Put the value into the formula

[tex]1.25=\dfrac{x_{f}+1.0}{3.0}[/tex]

[tex]x_{f}=1.25\times3.0-1.0[/tex]

[tex]x_{f}=2.75\ m[/tex]

(4). Given that,

Average speed = 1.25 m/s

Distance = 100 m

We need to calculate the time

Using formula of time

[tex]t=\dfrac{d}{v}[/tex]

Put the value into the formula

[tex]t=\dfrac{100}{1.25}[/tex]

[tex]t=80 sec[/tex]

(5). Given that,

Average speed = 5 miles/hr

Suppose, distance = 25 miles

We need to calculate the time

Using formula of time

[tex]t=\dfrac{d}{v}[/tex]

Put the value into the formula

[tex]t=\dfrac{25}{5}[/tex]

[tex]t=5\ hr[/tex]

Hence, (1). His final position is 1.5 m.

(2). The final position of the hedgehog is 3 m.

(3). The final position of the tortoise

(4). Her race time is 80 sec.

(5). It take to finish in 5 hr.

A car goes from 80 kn/h to 20 km/h in 0.5 h. What is the acceleration in km/h^2? *

Answers

Answer:

In physics, acceleration is defined as the rate of change of the velocity of an object with respect to time. That is A = VF - VI /T; Where A =  Acceleration VF = Final velocity = 20 km VI = Initial velocity = 80 km T= Time = 0.5 hr A = (20 - 80)/ 0.5 = - 60/.5  A = - 120 Km/ hr^2 Therefore, the acceleration of the car is -120 km/hr^2. Because the value is negative, the appropriate name that describe it is deceleration.I Hope this helps

The integral with respect to time of a force applied to an object is a measure called impulse, and the impulse applied to an object during a time interval determines its change in momentum during the time interval. The safety of a t-shirt launcher, used to help get crowds cheering at baseball games, is being evaluated. As a first step in the evaluation, engineers consider the design momentum of the launched t-shirts. The springs in the launcher are designed to apply a variable force to a t-shirt over a time interval of t1 = 0.5 s. The force as a function of time is given by F(t) = ať+ b, where a = –28 N/s2 and b = 7.0 N. The momentum of the t-shirt will be its initial momentum (po 0) plus its change in momentum due to the applied impulse: pf = po+SET+ F(t) dt. By applying the given time dependent function for F(t) and performing the integration, which of the following is the correct expression for Pf?
a) tl tl Pf= 0++)16
b) 0+*+*+b)
c) 0+++bt) 0++) ti

Answers

Answer:

Follows are the solution to this question:

Explanation:

By checking the value in which we have calculated by performing its differentiation of [tex]\frac{a}{3}t^3+bt[/tex], the correct form of its integer value is calculating  with regard to t, that also provides as expected [tex]at^2+b = F(t)[/tex].

Read the following scenario and decide if it is a hypothesis, theory or law.
Sue is camping and decides to drop a rock off a cliff. She finds a small rock, drops it.
and notes that it takes approximately two seconds to land. She then finds a somewhat
larger rock and concludes that the bigger rock should take less than two seconds to
land because it is bigger.

Answers

Answer:

Law

Explanation:

This is newton's second law of motion.

The correct answer is law

14. Which of the following denotes impedance?
A. H
B. R
C. Z
D. XL

Answers

Answer: The answer is A. H

A penguin is trying to cross the street. It’s velocity v as a function of time t is given in the graph below where rightwards is the positive velocity given. At what time does the penguib have the same positition as t = 0s?

Answers

Answer:

3.5

Explanation:

Khan Academy gives the answer here.

Which television show (non-sporting event) had the highest television ratings in the last year?


Source

Answers

'The Masked Singer' source: hollywoodreporter.com

The diagram shows a ball resting at the top of a hill.
Which statement best describes the energy in this
system?
Х
O The potential energy in the system is greatest at X.
O The kinetic energy in the system is greatest at X.
O Total energy in the system decreases as the ball
moyes from X to Y.
O Tofd energy in the system increases as the ball
moves from X to Y.
Y

Answers

Answer:

the answer is A The potential energy in the system is greatest at X.

Explanation:

i know things

A football player kicks a ball with an initial velocity of 30 meters per second at an angle of 53° above the horizontal. how long will the ball be in the air for

Answers

At time t, the ball attains a height y of

y = (30 m/s) sin(53º) t - 1/2 g t²

where g = 9.80 m/s² is the magnitude of the acceleration due to gravity.

Solve for t when y = 0:

(30 m/s) sin(53º) t - 1/2 g t² = 0

t ((30 m/s) sin(53º) - (4.90 m/s²) t ) = 0

t = 0   or   (30 m/s) sin(53º) - (4.90 m/s²) t = 0

We ignore the first solution, since that refers to the moment the ball is kicked.

(30 m/s) sin(53º) - (4.90 m/s²) t = 0

(30 m/s) sin(53º) = (4.90 m/s²) t

t = (30 m/s) sin(53º) / (4.90 m/s²)

t ≈ 4.9 s

Which exoplanet has the most Earth-like orbit?​

Answers

Answer: Kepler-452b

I think

hope it helps

PLEASE HELP!!
A football kicker lines up to kick a game winning kick. The goalpost is 30m away and the ball must clear the
3.3m high cross-bar. If the kick leaves his foot at an angle of 35 degrees, how fast must the kick be to be
good (assuming no one blocks it)?

Answers

Answer:

19.26 m/s

Explanation:

I will put a photo

2. Who bombarded molybdenum with atomic number (Z=42) with fast moving
neutrons?

Answers

Answer:

This question appears incomplete

Explanation:

This question appears incomplete, however Molybdenum-99 (⁹⁹Mo) is produced by bombarding Molybdenum-98 (⁹⁸Mo) with fast moving neutrons (¹₀n) as shown below

⁹⁸₄₂Mo + ¹₀n ⇒  ⁹⁹₄₂Mo + ⁰₀γ

This reaction is a nuclear caption reaction (which occurs in a nuclear reactor) for the production of Molybdenum-99 (⁹⁹Mo) which serves as a "precursor" for the production of medically viable/ Clinical Grade Technutium-99m (⁹⁹Tc) through Ion-exchange technique.

what is the probability that a measurement of the energy at time t will yield the result h^2pi^2/2ml^2

Answers

Answer:

The probability is [tex]\dfrac{1}{2}[/tex]

Explanation:

Given that,

The energy at time t will yield the result [tex]h^2pi^2/2ml^2[/tex]

Suppose, At time t = 0 the normalized wave function for a particle of mass m in the one-dimensional infinite well is given by,

[tex]V(x)={0 0<x<L,\ \infty\ elsewhere[/tex]

The normalized wave function is,

[tex]\psi(x)=\dfrac{1+i}{2}\sqrt{\dfrac{2}{L}}\sin\dfrac{\pi x}{L}+\dfrac{1}{\sqrt{2}}\sqrt{\dfrac{2}{L}}\sin\dfrac{2\pi x}{L}\ 0<x<L, 0\ elsewhere[/tex]

What is the probability that a measurement of the energy at time t will yield the result h^2 pi^2/2mL^2?

We need to find the probability

Using given data

[tex]probability=(\dfrac{1+i}{2})(\dfrac{1-i}{2})[/tex]

[tex]probability=\dfrac{1-i^2}{4}[/tex]

[tex]probability=\dfrac{1+1}{4}[/tex]

[tex]probability=\dfrac{1}{2}[/tex]

Hence, The probability is [tex]\dfrac{1}{2}[/tex]

Which state is made up of separated electrons and positive ions?

Answers

Answer: Plasma

Explanation: It's particles are ionized and just took quiz

Answer:

plasma

Explanation:

While making some observations at the top of the 63 m tall Astronomy tower, Ron
accidently knocks a 0.5 kg stone over the edge. How fast will the stone be moving when
it hits the ground?

Answers

Analysing the Question:

We are given:

height of the tower (h) = 63 m

mass of stone (m) = 0.5 kg

initial vertical velocity of the stone (u) = 0 m/s  [ since the stone fell, there was no force applied on it to go downwards]

final vertical velocity of the stone (v) = v m/s

acceleration of the stone due to gravity (a) = 10 m/s²    [we are letting g = 10]

** We will be neglecting air resistance in this answer**

Finding the final velocity of the stone:

from the third equation of motion

v² - u² = 2ah

replacing the variables

v² - (0)² = 2(10)(63)

v² = 1260

v = √1260

v = 35.5 m/s

Gravity causes objects to be attracted to one another. This attraction keeps our feet firmly planted on the ground and causes the moon to orbit the earth. The force of gravitational attraction is represented by the equation F=Gm1m2r2, where F is the magnitude of the gravitational attraction on either body, m1 and m2 are the masses of the bodies, rrr is the distance between them, and G is the gravitational constant. In SI units, the units of force are kg⋅m/s2, the units of mass are kg, and the units of distance are mm. For this equation to have consistent units, the units of G must be which of the following?
A. kg3m⋅s2
B. kg⋅s2m3
C. m3kg⋅s2
D. mkg⋅s2

Answers

Answer:

C m³/kgs²

Explanation:

From the question, we know that

F = Gm1m2/R², where

F = the Force of gravity in N.

G = gravitational constant, in Nm²/kg²

m1 = mass in kg

m2 = mass in kg

R = distance between the objects in m

Now, if we substitute the units of each in the formula, we have

N = G * (kg * kg) / m²

N = G (kg²) / m²

Nm² = G kg², remember, N itself is kgm/s², so we substitute for that

Kgm/s² * m² = G kg²

Kgm³/s² = G kg²

G = (kgm³/s²) / kg²

G = m³/kgs²

And that's our answer

16. How much does the gravitational potential
energy of a 1.2 kg textbook increase if you lift it
upward 32 cm?

Answers

Answer:

El uso mas común de la energía potencial gravitacional, se da en los objetos cercanos a la superficie de la Tierra donde la aceleración gravitacional, se puede presumir que es constante y vale alrededor de 9.8 m/s2.

Explanation:

4. Two identical charges are 25cm apart. They repel each other with the force of 2 x 10-6 Find Each
charge?

Answers

Answer:

Both charges are of the same sign (positive or negative) and with a value of 3.73 ηc.

Explanation:

Coulomb's Law

The electrical force between two charged objects is directly proportional to the product of their charges and inversely proportional to the square of the distance between the two objects.

Written as a formula:

[tex]\displaystyle F=k\frac{q_1q_2}{d^2}[/tex]

Where:

[tex]k=9\cdot 10^9\ N.m^2/c^2[/tex]

q1, q2 = the objects' charge

d= The distance between the objects

We know both charges are identical, i.e. q1=q2=q. Since the force is repulsive, both charges are positive or negative.

We also are given the force between them:

[tex]F=2\cdot 10^{-6}\ N[/tex]

And also the distance

d=25 cm = 0.25 m

Substituting all into the formula:

[tex]\displaystyle 2\cdot 10^{-6}=9\cdot 10^9\frac{q.q}{0.25^2}[/tex]

The product of [tex]q.q=q^2[/tex]. Operating:

[tex]\displaystyle 2\cdot 10^{-6}=9\cdot 10^9\frac{q^2}{0.0625}[/tex]

Operating:

[tex]\displaystyle 0.0625\cdot 2\cdot 10^{-6}=9\cdot 10^9\cdot q^2[/tex]

Solving for q:

[tex]\displaystyle q^2=\frac{0.0625\cdot 2\cdot 10^{-6}}{9\cdot 10^9}[/tex]

[tex]q^2=1.39\cdot 10^{-17}[/tex]

[tex]q=\sqrt{1.39\cdot 10^{-17}}=3.73\cdot 10^{-9}\ c= 3.73\ \eta c[/tex]

Both charges are of the same sign (positive or negative) and with a value of 3.73 ηc.

A stone is thrown straight up at an upward speed of 8.0 m/s from the top of the cliff. The stone hits the ground and stops 5.0 s later. What is the height of the cliff?

Answers

Answer:

22

Explanation:

An airplane is flying at a velocity of 79 m/s eastward relative to the air. Due to a high-pressure region to the north, the velocity of the air relative to the ground is 18 m/s southward. Find the ground speed of the airplane.
_________ m/s

Answers

Answer:

81.02m/s toward the southeast

Explanation:

use Pythagorean theorem

c^2=a^2+b^2

create a coordinate system, 79m/s toward the east and 18m/s toward the south.

root(79^2+18^2)=81.02

Because of your knowledge of physics, you have been hired as a consultant for a new James Bond movie, "Oldfinger". In one scene, Bond jumps horizontally off the top of a cliff to escape a villain. To make the stunt more dramatic, the cliff has a horizontal ledge a distance h beneath the top of the cliff which extends a distance LL from the vertical face of the cliff. The stunt coordinator wants you to determine the minimum horizontal speed, in terms of L and h, with which Bond must jump so that he misses the ledge.

Answers

Answer:

v = [√(g/2h)]L

Explanation:

Let v be the initial horizontal velocity, t be the time James Bond uses to jump over the ledge of length, L.

So, vt = L and t = L/v

Also, since James Bond has no initial horizontal velocity, he falls freely through the distance, h so we use the equation y - y' = ut - 1/2gt², where y = 0 (at the top of the cliff) and y' = -h, u = 0 (initial vertical velocity), g = acceleration due to gravity = 9.8 m/s² and t = the time it takes to jump off the cliff = L/v.

Substituting these values into the equation, we have

y' - y = ut - 1/2gt²

-h - 0 = 0 × t - 1/2g(L/v)²

-h  = - 1/2gL²/v²

v² = gL²/2h

taking square root of both sides, we have

v = [√(g/2h)]L

So, James Bond's minimum horizontal speed is v = [√(g/2h)]L

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