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uysha [10]
3 years ago
15

Compared to its weight on earth, a 10- kg object on the moon will weigh...

Physics
2 answers:
Marizza181 [45]3 years ago
4 0
Your weight on the Moon is 16.5% what you would experience on Earth.

10 kg * 0.165 = 1.65 kg
DaniilM [7]3 years ago
3 0
Weight = mass * gravity
W = 10 kg * 9.81
W = 98.1 N

hope this helps :)
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An object in free fall travels a distance s that is directly proportional to the square of the time t. If an object falls 1088 f
ikadub [295]

Answer:

1,700feet

Explanation:

If an object in free fall travels a distance s that is directly proportional to the square of the time t, this can be represented mathematically as;

S = kt²where;

k is the proportionality constant

K = s/t²

s1/t1²= s2/t2²= Sn/tn²= k for values of the distance and time. Using the formula

s1/t1² = s2/t2² where;

s1 is the falling distance in time t1 s2 is the falling distance in time t2

Given s1 = 1088feet, t1 = 8secs, s2 = ? t2 = 10secs

Substituting this value in the formula to get s2, we have;

1088/8²= s2/10²

64s2= 108800

s2 = 108800/64

s2 = 1,700feet

This means the object will fall a distance of 1,700feet in 10seconds

5 0
3 years ago
Who is Carl Jung???????
Ierofanga [76]

Answer: Carl Gustav Jung was a Swiss psychiatrist and psychoanalyst who founded analytical psychology. Jung's work has been influential in the fields of psychiatry, anthropology, archaeology, literature, philosophy, psychology, and religious studies.

Explanation:

7 0
2 years ago
Read 2 more answers
What is 10^2 in scientific notation?
Eduardwww [97]

Answer:

1×10^2

Explanation:

Move the decimal so there is one non-zero digit to the left of the decimal point. The number of decimal places you move will be the exponent on the 10. If the decimal is being moved to the right, the exponent will be negative. If the decimal is being moved to the left, the exponent will be positive.

3 0
3 years ago
Read 2 more answers
1. Describe how the periodic table differentiates between metals and nonmetals.
IgorC [24]
There would be a symbol on names of the elements that would say which state it would usually be in.


there are more metals in the periodic table of elements (currently) if that's what the second question is asking about
7 0
3 years ago
A 1 pF capacitor is connected in parallel with a 2 pF capacitor, the parallel combination then being connected in series with a
asambeis [7]

Hi there!

We can approach this problem in many ways, but to show you how I arrive to the final conclusion, I will begin by solving the circuit with an assigned value for the power source.

Let's use a power source value of 6V (produces nice numbers).

Recall the following rules.

Capacitors in series:

  • Voltage ADDS up.
  • Charge is EQUAL across each.
  • Total capacitance uses the reciprocal rule.

Capacitors in parallel:

  • Voltage is EQUAL across each.
  • Charge ADDS up.
  • Total capacitance is simply the sum.

Solving for total capacitance:
C_P = 1 + 2 = 3 pF\\\\C_T = \frac{1}{\frac{1}{3} + \frac{1}{3}} = 1.5 pF

Using rules for capacitors in series and parallel, the total capacitance of the circuit is 1.5 pF.

Thus, the total charge is:
Q = C_TV\\Q = 1.5 pF * 6 V = 9 pC

9 pC will go through the parallel combination and the individual capacitor in series with the combination.

Since the voltage adds up, we can find the amount of voltage across the 3pF capacitor with the remaining going through the branches of the parallel combination.

V = \frac{Q}{C}\\\\V = \frac{9pC}{3pF} = 3V

Therefore, 3V goes through each branch since 6V - 3V = 3V.

Solving for the charge for each capacitor:
Q  = CV\\Q = (1 pF)(3V) = 3pC\\\\Q = (2pF)(3V) = 6pC\\\\Q = (3pF)(3V) = 9pC

<u>Thus, the capacitor with the greatest charge is the 3 pF capacitor. </u>

To explain without all of the work above, the equivalent capacitance of the parallel combination (1 pF + 2pF = 3pF) is equivalent to the capacitance of the capacitor in series (3pF). Thus, the voltage across the parallel capacitors (since voltage is the same across branches in parallel) and the series capacitor is equal. However, since charge SUMS UP for capacitors in parallel, they would have less charge than the single capacitor in series.

5 0
2 years ago
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