A plane is traveling with a velocity of 70 miles/hr with a direction angle of 24 degrees. The wind is blowing at 25 miles/hr with a direction angle of 190 degrees. What is the vertical component of the wind velocity? Round your answer to the nearest whole number.

Answers

Answer 1

Wind velocity:

25 m/h with a direction angle of 190°.

Vertical component:

25 sin 190 = -4.34 m/s = - 4 m/s


Related Questions

A bungee jumper jumps off a bridge and bounces up and down several times.She finally comes to rest 30 m below the bridge from which she just jumped.If her mass is 50 kg and the spring constant of the bungee cord is 10 N/m,how much energy was lost due to air resistance while she was bouncing?(Recall that g = 9.8 m/s2)A. 9200 NB. 7330 Nc. 10,200 ND. 8605 N

Answers

Given data

*The given height is h = 30 m

*The given mass is m = 50 kg

*The spring constant of bungee cord is k = 10 N/m

*The value of the acceleration due to the gravity is g = 9.8 m/s^2

The net change in potential energy is calculated as

[tex]\begin{gathered} \Delta U_p=mgh \\ =(50)(9.8)(30) \\ =14700\text{ J} \end{gathered}[/tex]

The spring stretch is calculated by using the relation as

[tex]\begin{gathered} F=mg \\ kx=mg \\ x=\frac{mg}{k} \\ =\frac{(50)(9.8)}{10} \\ =49\text{ m} \end{gathered}[/tex]

The energy stored in spring is calculated as

[tex]\begin{gathered} U_s=\frac{1}{2}kx^2 \\ =\frac{1}{2}(10)(49)^2 \\ =12005 \end{gathered}[/tex]

The energy was lost due to air resistance while she was bouncing is calculated as

[tex]\begin{gathered} \Delta E=\Delta U_p-U_s_{}_{} \\ =14700-12005 \\ =2695\text{ J} \end{gathered}[/tex]

Hence, the energy was lost due to air resistance while she was bouncing is 2695 J

which force is used when a rock fell

Answers

Answer:

When something falls, it falls because of gravity. Because that object feels a force, it accelerates, which means its velocity gets bigger and bigger as it falls. The strength with which the Earth pulls on something in the form of gravity is a type of acceleration. Earth pulls on everything the exact same amount. A rockfall is a type of fast-moving landslide that happens when rock or earth falls, bounces, or rolls from a cliff or down a very steep slope. Rockfalls start from high outcrops of hard, erosion-resistant rock that become unstable for a variety of reasons. When a rock is thrown upward, if we exempt the air drag then the only force that is acting on the rock is the gravitational force, also known as the weight of the rock. The acceleration due to gravity is always acting downward.

Answer: The force is Gravity

Explanation:

Gravity is what makes us stay to the ground and if a rock fell it would go to the ground just like if i where to jump i would land on the floor/ground  i wont be floating because of gavity.

Have a good day.

Marc is sitting at his desk with good posture. What MOST likely is Marc doing?

Answers

It is most likely that Marc is studying while assuming a good sitting posture.

What is posture?

Posture is defined as the the various ways an individual carry their body in order to assume a particular position which may be while sitting of standing up.

There different types of postures which are classified under good or bad posture. They include the following:

Healthy Posture.Kyphosis Posture.Flat Back Posture.Swayback Posture.Forward Head Posture.

To sit correctly at a dest with a good posture is an example of a healthy posture which was assumed by Marc.

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Shown in the figure, are electric field lines around two point charges. The two charges might be which of these? A)two protons B)a proton and an electron C)two electrons D)two croutons E)two neutrons

Answers

Given:

A figure of the electric field lines.

To find:

The nature of the charges.

Explanation;

The electric field lines always start at a positive charge. And the electric field lines always end at a negative charge. If there is a single charge, the field lines may start at infinity or end at infinity.

Electric field lines also do not form closed loops. They do not cross each other.

In the figure, the field lines start at the blue charge and end at the charge represented by the color yellow.

Therefore the blue charge is positive and the yellow charge is negative.

Final answer:

Therefore the correct answer is option B.

Students conducted an experiment in which a ball was thrown into the air and then caught at the same height from which it was released. They determined that the ball had 100 J of kinetic energy when it was released. They calculated the ball's energy just before it was caught and determined that it's kinetic energy was less than 100 J.Which of the following statements MOST LIKELY accounts for the difference in the ball's initial and final kinetic energy?

Answers

A ball was thrown into the air and then caught at the same height from which it was released.

The initial kinetic energy of the ball was 100 J and the ball's kinetic energy just before it was caught was less than 100 J.

Every 5 seconds, the crest of a wave in the ocean travels 25 meters. What is the speed of the wave?

Answers

Given

Every 5 seconds

One wave travel 25m

Speed of waves

Explanation

[tex]\begin{gathered} v=\frac{25m}{5s} \\ v=5\text{ m/s} \end{gathered}[/tex]

The answer would be 5 m/s

What conditions must be met in order for work to be done?

A. The applied force must make the object move.

B. The output force must be greater than the input force.

C. At least part of the applied force must be in the same direction as the movement of the object.

D. The work must be greater than the momentum.

Answers

At least part of the applied force must be in the same direction as the movement of the object must be met in order for work to be done.

What are the conditions to work?The following are the two prerequisites for working: To do the work, the body must be subjected to a force, or F 0. The body must move in the direction of the applied force, or S 0, as a result of the applied force.

There must be a force used. The displacement is the distance over which the force must act. The displacement must be a component of the force.

A legal term known as a condition precedent refers to an event that must occur before a certain contract is regarded as being in effect or before either party is obliged to fulfill any obligations.

Therefore, the correct answer is option C. At least part of the applied force must be in the same direction as the movement of the object.

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When a 6.0-F capacitor is connected to a generator whose rms output is 25 V, the current in the circuit is observed to be 0.40 A. What is the frequency of the source?

Answers

The frequency of the source is  1.66 Hz.

What is the impedance?

Let us recall that the impedance of the circuit is the opposition that is offered to the flow of current by a circuit component that is not a resistor. Now let us find the impedance.

I = V/Z

I = current

V = voltage

Z = impedance

Z = V/I

Z = 25/0.4

Z = 62.5 ohm

Z^2 = R^2 + Xc^2

Z^2 =  Xc^2

Xc= Z

Xc = 2πfC

f = frequency

C = capacitance

f= Xc/2πC

f =  62.5/2 * 3.142 * 6

f = 1.66 Hz

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1. Consider the example problem, but with the lower pressure reduced to 100 Pa. How much work would be done in a single cycle?1. 29,970 J2. 0 J3. -30,030 J4. 27,000 J

Answers

Answer:

29970 J

Explanation:

Given:

[tex]\begin{gathered} P_A=P_B=10^5Pa \\ P_c=P_D=100\text{ Pa\lparen The new lower pressure\rparen} \\ V_A=V_D=0.1m^3 \\ V_B=V_C=0.4m^3 \end{gathered}[/tex]

Work done across AB

[tex]\begin{gathered} W_{AB}=P_{AB}(V_B-V_A) \\ \\ W_{AB}=10^5(0.4-0.1) \\ \\ W_{AB}=0.3\times10^5 \\ \\ W_{AB}=30000J \end{gathered}[/tex]

Work done across BC = 0 J (Since there is no change in volume)

Work done across DA = 0 J (Since there is no change in volume)

Work done across CD

[tex]\begin{gathered} W_{CD}=P_{CD}(V_D-V_C) \\ \\ W_{CD}=100(0.1-0.4) \\ \\ W_{CD}=100(-0.3) \\ \\ W_{CD}=-30J \end{gathered}[/tex]

Work done in one cycle:

[tex]\begin{gathered} W_{cycle}=W_{AB}+W_{BC}+W_{DA}+W_{CD} \\ \\ W_{cycle}=3000J+0+0-30 \\ \\ W_{cycle}=29970J \end{gathered}[/tex]

29970J of work will be done in a single cycle

Two cars travel in the same direction along a straight highway, one at a constant speed of 55 mi/h and the other at 60 mi/h.(a) Assuming they start at the same point, how much sooner does the faster car arrive at a destination 14 mi away?_____ min(b) How far must the faster car travel before it has a 15-min lead on the slower car?_____ mi

Answers

We will have the following:

a) We first determine the time it takes to travel the distance to both vehicles:

*

[tex]t_1=\frac{14mi\ast1h}{55}\Rightarrow t_1=\frac{14}{55}h[/tex]

*

[tex]t_2=\frac{14mi\ast1h}{60mi}\Rightarrow t_2=\frac{11}{12}h[/tex]

So, we determine now the difference in time:

[tex]\frac{11}{12}h-\frac{14}{55}h=\frac{437}{660}h\approx0.66h[/tex]

So, the fastest car will arrive approximately 0.66 hours sooner.

b) We determmine the distance it must travel the fastest car to have a 15 minute lead on the other one as follows:

First, we determine the time difference required:

[tex]t=\frac{15min\ast1h}{60min}\Rightarrow t=0.25h[/tex]

Then, since both vehicles will move relative to each other, we will have that:

[tex]d_{c1}=(60mi/h)(0.25h)\Rightarrow d_{c1}=15mi[/tex]

So, the fastest car must be 15 miles ahead of the other car in order to have a 15 minute lead with respect to the second car.

this is a 3 part question20) A 9.50-g bullet has a speed of 1.30 km>s. (a) What is its kinetic energy in joules? (b) What is the bullet’s kinetic energy if its speed is halved? (c) If its speed is doubled?

Answers

Given that mass of bullet, m = 9.50 g = 0.0095 kg

speed of bullet, v is 1.30 km/s

(a) Kinetic energy is given by the formula

[tex]K\mathrm{}E\text{. = }\frac{1}{2}mv^2[/tex]

Substituting the values in the above formula, we get

[tex]K\mathrm{}E\mathrm{}=\frac{1}{2}(0.0095)(1.30)^2=8.0275\times10^{-3}\text{ J}[/tex]

(b) Speed of bullet is v/2

Sustituting this value in the formula of kinetic energy, we get

[tex]\begin{gathered} K.E._1=\text{ }\frac{1}{2}m(\frac{v}{2})^2 \\ =\frac{1}{2}\times(0.0095)\times(\frac{1.30}{2})^2 \\ =2.0068\times10^{-3\text{ }}J \end{gathered}[/tex]

(c) Speed of bulllet becomes 2v

Sustituting this value in the formula of kinetic energy, we get

[tex]\begin{gathered} K.E._2=\text{ }\frac{1}{2}m(2v)^2 \\ =\frac{1}{2}\times(0.0095)\times(2\times1.30)^2 \\ =0.03211J \end{gathered}[/tex]

Multiple Choice: A car with a mass of 825 kg moves along the roadway at aspeed of 15 m/s to the east. What impulse is required to decrease the speed of theboat to 10 m/s east?

Answers

Given:

The mass of the car is m = 825 kg

The intial speed of the car is

[tex]v_i\text{ = 15 m/s}[/tex]

towards east.

The final speed of the car is

[tex]v_f\text{ = 10 m/s}[/tex]

To find the impulse of the car.

Explanation:

The impulse can be calculated by the formula

[tex]Impulse\text{ = mv}_f-mv_i[/tex]

On substituting the values, the impulse will be

[tex]\begin{gathered} Impulse\text{ = \lparen825}\times10\text{\rparen-\lparen825}\times15\text{\rparen} \\ =\text{ -4125 kg m/s} \end{gathered}[/tex]

The impulse will be 4125 kg m/s due

How is kinetic energy and pontential energy alike ?

Answers

The kinetic energy of the particle is associated with the velocity of the particle where as the potential energy of the particle depneds upon the position ofthe particle.

Both the energies can transform into each other.

For example,

When a ball is dropped from the building's top floor, the potential energy of the ball is maximum at the top of the builiding and transform into the kinetic energy while moving in the downward direction.

The kinetic energy of the ball is maximum just before hitting the ground.

This shows the tranformation of the potential energy to the kinetic energy.

Thus, the kinetic energy and potential can transform into each other is one the similarity in behaviour.

Which of these uses digital signals to store, send, or receive information?

Answers

Answer:

here you go

Explanation:

For storing information we use digital signals since that’s what our digital computer storage uses.

For transmitting signals in a computer we use digital signals by simply changing the voltage on the data route or bus.

For wirelessly transmitting signals we use analog signals since electromagnetic radiation is analog itself. Although, the information can be analog modulated OR digitally modulated, depending on the application.

how many joules does a lamp marked 12 volts, 24 w consumed in an hour . And also what is the current?

Answers

Given data:

* The voltage given is 12 volts.

* The value of the power given is 24 Watt.

* The time till which the lamp is used is,

[tex]\begin{gathered} t=1\text{ hr} \\ t=60\times60\text{ s} \\ t=3600\text{ s} \end{gathered}[/tex]

Solution:

(a). The energy consumed by the lamp in time t is,

[tex]E=P\times t[/tex]

where P is the power of lamp, t is the time, and E is the energy consumed,

Substituting the known values,

[tex]\begin{gathered} E=24\times3600 \\ E=86400\text{ J} \\ E=86.4\times10^3\text{ J} \\ E=86.4\text{ kJ} \end{gathered}[/tex]

Thus, the energy consumed by the lamp in 1 hour is 86.4 kJ.

(b). The power of the lamp in terms of voltage and current is,

[tex]\begin{gathered} P=VI \\ I=\frac{P}{V} \end{gathered}[/tex]

where P is the power, V is the voltage and I is the current,

Substituting the known values,

[tex]\begin{gathered} I=\frac{24}{12} \\ I=2\text{ A} \end{gathered}[/tex]

Thus, the current flowing through the lamp is 2 A.

Two different masses have equal, non-zero kinetic energies. The momentum of the smaller mass isSelect one:A) smaller than the momentum of the larger mass.B) There is not enough information to answer the question.C) equal to the momentum of the larger mass.D) zero.E) Larger than momentum of the larger mass.

Answers

Let the mass of smaller object be m and mass of larger object be M.

As the kinetic energies are equal,

[tex]\frac{p_m^2}{2m}=\frac{p^2_{_M}}{2M}[/tex]

On solving further,

[tex]\frac{p_m}{p_M}=\text{ }\sqrt[]{\frac{m}{M}}[/tex]

Hence, option A is correct.

When a stone and a feather is thrown down from a height under free fall. Which of the two will first reach the ground???​

Answers

Answer:

The stone

Explanation:

It will be the first to fall because of its mass which is heavier than that of the feather .

How much time would it take a car to go from a speed of 10m/s to 30m/s if it acceleratesat a rate of 4.0m/s/s?

Answers

Given,

The initial velocity of the car, u=10 m/s

The final velocity of the car, v=30 m/s

The acceleration of the car, a= 4.0 m/s²

From one of the equations of the motion, we have

[tex]v=u+at[/tex]

Where t is the time duration.

On rearranging the above equation,

[tex]t=\frac{v-u}{a}[/tex]

On substituting the known values,

[tex]t=\frac{30-10}{4.0}=5\text{ s}[/tex]

Therefore the time that the car takes to accelerate is 5 s

A projectile is fired at an upward angle of 55.0 ∘ from the top of a 155 m cliff with a speed of 165 m/s .
a)What will be its speed when it strikes the ground below? (Use conservation of energy and neglect air resistance.)

Answers

A projectile is fired at an upward angle and the speed of the object when it strikes the ground below will be 434.5 m/s.

What is Projectile motion?

A projectile is an object or particle that is thrown toward the surface of the Earth and moves along a curved route only under the influence of gravity. Galileo demonstrated that this curving path was a parabola, but in the unique situation where it is hurled straight up, it may also be a straight line.

According to the question,

[tex]h=v_0_yt+1/2gt^2[/tex]

-155 m = (165 × sin 55°)t - 0.5(9.8)t²

-155 = 135.16t - 4.9 t²

4.9 t² - 135.16t - 155 = 0

t = 27.5 seconds.

Now, the speed of the object when it strikes the ground will be,

[tex]v_f=v_i+gt[/tex]

= 165 + (9.8)(27.5)

[tex]v_f[/tex] = 434.5 m/s.

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Round the answer for each problem to the correct number of significant figures.

a. (7.31 × 104) + (3.23 × 103)

b. (8.54 × 10–3) – (3.41 × 10–4)

c. 4.35 dm × 2.34 dm × 7.35 dm

d. 4.78 cm + 3.218 cm + 5.82 cm

e. 38,736 km ÷ 4784 km

Answers

After solving each problem to correct the number of significant figures :

(a) 76330

(b) 8199 × 10⁻³

(c) 74.81 dm.

(d) 13.8 cm

(e) 8.09 km

What is an Equation?

Equations are mathematical expressions that have two algebraic expressions on either side of an equals (=) sign. The expressions on the left and right are shown to be equal to one another, demonstrating this relationship. L.H.S. = R.H.S. (left hand side = right hand side) is a fundamental mathematical formula.

According to the question,

(a) (7.31 × 10⁴) + (3.23 × 10³)

(73100) + (3230) = 76330

(b) (8.54 × 10⁻³) – (3.41 × 10⁻⁴)

= 8199 × 10⁻³

(c) 4.35 dm × 2.34 dm × 7.35 dm

= 74.81 dm.

(d) 4.78 cm+3.218 cm+5.82 cm

= 13.8 cm

(e) 38,736 km ÷ 4784 km

= 8.09 km

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Rtz coordinate system

Answers

Due to the car goes around the trajectory without sliding, then. it is necessary that centripetal force equals the friction force.

Then, we have:

Fc = Fr

where,

Fc = m(v^2/R) centripetal force

Fr = μN = μ*m*g friction force

Then, by replacing the precious expressions we obtain:

m(v^2/R) = μ*m*g

And by solving for v:

[tex]v=\sqrt[]{\mu\cdot g\cdot R}[/tex]

where,

μ = 1.00

g = 9.8 m/s^2

R = 70.0 m

By replacing we get:

[tex]undefined[/tex]

A traffic light hangs from a pole as shown in (Figure 1). The uniform aluminum pole AB is 7.20 m long and has a mass of 11.0 kg . The mass of the traffic light is 22.0 kg .
-Determine the tension in the horizontal massless cable CD.
-Determine the vertical component of the force exerted by the pivot A on the aluminum pole.
-Determine the horizontal component of the force exerted by the pivot A on the aluminum pole.

Answers

There is a 409.30 N force in the horizontal massless cable CD.

The vertical component of the pivot A's force on the aluminum pole, which is  323.73N.

The force that the pivot A applies to the aluminum pole has a horizontal component of 409.30 N.

Force is any influence to the motion of the body .

Basically the product of mass and acceleration.

Length of the pole = 7.20 m

Mass of the pole = m = 11.0 kg

Mass of the traffic light = M = 22.0 kg

Let the length of the rod AD be L

Also [tex]Lsin\alpha = 3.8[/tex]

[tex]\alpha = 37[/tex]°

[tex]Sin\alpha = 0.602[/tex]

L = [tex]\frac{3.8}{0.602}[/tex]

L = 6.312 m

In order to determine the tension (T) in the cable, the free body diagram will give the detailed information.

On balancing all the forces in both the 'x' and 'y' direction, i.e. summation of all the forces in 'x' and 'y' direction must equal to zero.

∑[tex]F_{x}[/tex]  = 0

[tex]R_{x}[/tex] - T = 0

[tex]R_{x}[/tex]  = T

∑[tex]F_{y}[/tex]  = 0

[tex]R_y- W_p - W_l = 0[/tex]

[tex]W_p[/tex] = 9.81 * 11 = 107.91 kg

[tex]W_l\\[/tex] = 9.81 * 22 = 215.82 kg

[tex]R_y\\[/tex] = [tex]W_p + W_l[/tex]

[tex]R_y\\[/tex] = 107.91 + 215.82

[tex]R_y\\[/tex] = 323.73 N

The vertical component of the force exerted by the pivot A on the aluminum pole is 323.73 N

Taking moment along x-axis

M = 0

[tex]Th-mgCos\alpha* \frac{1}{2} - mglCos\alpha[/tex] = 0

T = [tex]\frac{glCos\alpha }{h} *\frac{m}{2}*M[/tex]

T = 409.30 N

The tension in the horizontal massless cable CD is 409.30 N

[tex]R_{x}[/tex]  = T = 409.30 N

The horizontal component of the force exerted by the pivot A on the aluminum pole is 409.30 N.

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A small mailbag is released from a helicopter that is descending steadily at 2.82 m/s.(a) After 3.00 s, what is the speed of the mailbag?v = m/s(b) How far is it below the helicopter?d = m(c) What are your answers to parts (a) and (b) if the helicopter is rising steadily at 2.82 m/s?v = m/sd = m

Answers

a)

When the package is released from the moving helicopter, the package and the helicopter has a common speed. The package is in freefall. We would calculate the speed of the helicopter after a given time t by applying the formula,

v = vo + gt

where

vo is the initial velocity of of the package and it is equal to the speed of the helicopter

v is the final velocity of the package after time t

g is th acceleration due to gravity

From the information given

vo = 2.82

t = 3

g = 9.8

Thus,

v = 2.82 + 9.8 * 3 = 2.82 + 29.4

v = 32.22 m/s

After 3.00 s, the speed of the mailbag is 32.22 m/s

b) We want to calculate the distance covered by the mailbag in 3 s. We would apply the formula which is expressed as

s = vot + 1/2 x g x t^2

where

s is the distance

vo = 2.82

g = 9.8

t = 3

Thus,

s = 2.82 x 3 + 1/2 x 9.8 x 3^2 = 8.46 + 44.1

s = 52.56 m

Since we want to calculate the distance from the helicopter, we would calculate the diatance that the helicopter also travelled downwards in 3 s by applying the formula for calculating distance which is expressed as

distance = speed x time

Thus

distance = 2.82 x 3 = 8.46 m

Difference in distance = 52.56 - 8.46 = 44.1

The package is 44.1 m from the helicopter

c) If the helicopter is moving upwards, it would be thrown out and it would attain a certain height before it starts descending. The height is calculated by the formula,

h = vo^2/2g

By substituting the values,

h = 2.82^2/2 x 9.8 = 0.406 m

When the mail bag attains this height, it will start moving downwards. At this height, the final velocity is zero. We would calculate the time taken to attain this height by applying the formula,

v = vo - gt

v = 0

Thus,

0 = 2.82 - 9.8 x t

9.8t = 2.82

t = 2.82/9.8 = 0.288

The time left for freefall within the first 3 seconds is

3 - 0.288 = 2.712 s

The height attained by the mailbag in 2.712s is calculated by the formula,

h = gt^2/2

h = 9.8 x 2.712^2/2 = 36.04 m

Distance travelled by helicopter by ascending upward in 3 s is

distance = 2.82 x 3 = 8.46

Height of mailbag from final position after 3 seconds is

36.04 - 0.406 = 35.634

Difference in distance = 35.634 + 8.46 = 44.094

The package is 44.094 m from the helicopter

For the velocity of the mailbag after 3 seconds,

v = - vo + gt

v = - 2.82 + 9.8 x 3 = - 2.82 + 29.4

v = 26.54 m/s

A block of known mass hanging from an ideal spring of known spring constant is oscillating vertically. A motion detector records the position, velocity, and acceleration of the block as a function of time. Which of the following indicates the measured quantities that are sufficient to determine whether the net force exerted on the block equals the vector sum of the individual forces?A. Acceleration only B. Acceleration and position only C. Acceleration and velocity onlyD. Acceleration, position, and velocityPart 1. “Whether The net force exerted on the block equals the vector sum of the individual forces” really means “Newton’s Second Law”. The problem wants you to make measurements to show that the net force equals mass times acceleration. How would you find the force exerted by the spring? How do you find the force exerted by gravity? Part 2. Connect your answer to the previous question with the right answer. Clearly explain which quantities must be measured (between acceleration, velocity, and position) and explain what each quantity is used for to show Newton’s second law.

Answers

Answer:

B. Acceleration and position only

Explanation:

We need to identify the measurements that show that the net force is equal to the sum of the force exerted by the spring and the force of gravity, so we want to know if the following equation is satisfied

[tex]\begin{gathered} F_{net}=F_s-mg \\ ma=k(\Delta x)-mg \end{gathered}[/tex]

Where m is the mass, a is the acceleration, k is the spring constant, Δx is the stretched, and g is the gravity. The mass m, the spring constant k, and the gravity g are known. So, the measurement quantities that we need are the acceleration and the position.

So, the answer is

B. Acceleration and position only

Part 1.

How would you find the force exerted by the spring?

The force exerted by the spring is equal to k(Δx ), so to find Δx, we need to identify the position.

How do you find the force exerted by gravity?

The force exerted by gravity is calculated as mass times gravity, so it is known.

Part 2.

We need to measure Acceleration and position.

The acceleration to calculate the net force because by the second law of newton Fnet = ma

The position to calculate the force exerted by the spring.

Ellipses have only one focus. Is this true or false?

Answers

In any ellipse there are two foci. This two points are fixed and are fundamental for the construction opf the ellipse. Therefore the statement is false.

The inductor in the RLC tuning circuit of an AM radio has a value of 9 mH. What should be the value of the variable capacitor, in picofarads, in the circuit to tune the radio to 94 kHz

Answers

We are asked to determine the capacitance of an RLC circuit given the frequency. To do that we will use the following formula:

[tex]C=\frac{1}{4\pi^2f^2L}[/tex]

Where:

[tex]\begin{gathered} C=\text{ capacitance} \\ f=\text{ frequency} \\ L=\text{ inductance} \end{gathered}[/tex]

Now, We plug in the values:

[tex]C=\frac{1}{4\pi^2(94\times10^3Hz)^2(9\times10^{-3}H)}[/tex]

Now, we solve the operations:

[tex]C=3.19\times10^{-10}F[/tex]

The capacitance is 3.19x10^-10 farads. In Picofarads this is equivalent to:

[tex]C=0.0319pF[/tex]

Three non-parallel forces which can be represented both in magnitude and direction by the three sides of a triangle, taken in order, can: A. make a body oscillate B. make a body rotate C. keep a body in equilibrium D. move a body in a straight line E. always produce vertical motion of body​

Answers

Answer:

If the triangle representing the 3 non-colinear forces is closed

then then (C) the body is in equilibrium:

Adding vectors  A + B + C = 0 means that the resultant of adding the three vectors A, B, and C is zero

Point charges create equipotential lines that are circular around the charge (in the plane of the paper). What is the potential energy, in nJ, of a 1 nC charge located 1.99 m from a 2 nC charge ?

Answers

The potential energy between two charges can be written as:

[tex]U_e=\frac{kq_1q_2}{r}[/tex]

In our case, it'll be equal to:

[tex]U_e=\frac{9*10^9*1*10^{-9}*2*10^{-9}}{1.99}=9.045nJ[/tex]

Then, our answer is PE=9.045nJ

Examine the heating curve for water below. Answer each question andcomplete the table to review your understanding of heating curves

Answers

Explanation:

When the temperature is increasing, the kinetic energy change, and when the graph is horizontal (the water is changing phases), the potential energy changes.

So at A, C, and E, there is a change in kinetic energy and at B and D there is a change in potential energy.

Then, we use a specific heat capacity of 4.2 J/g°C when the water is at A, C, and E. We use latent heat of 334 J/g for melting and latent heat of 2260 J/g for evaporation.

Answer:

Therefore, the complete table is

12. How could extreme heat (resulting from Climate Change) affect human andanimal life?

Answers

ANSWER:

The answer is given in the step by step of the question

STEP-BY-STEP EXPLANATION:

Extreme heat can affect human and animal life in the following ways:

• Animals are sensitive to changes in temperature, as much or more than humans. Think how bad you feel when you have a fever. They also suffer this type of discomfort as a consequence of climate change.

,

• Climate change is pushing many species to the limit. They lack water to drink or suffer from temperatures in which they are not comfortable.

,

• Provocation of forest fires damaging the habitat of animals and humans

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