Answer:
<em>King </em><em>George</em><em> </em><em>lll </em><em>sent </em><em>British </em><em>soldiers</em><em> </em><em>to </em><em>the </em><em>colonies</em><em> </em><em>to </em><em>enforce</em><em> </em><em>payment</em><em> </em><em>of </em><em>taxes,</em><em> </em><em>because</em><em> </em><em>colonist</em><em> </em><em>sometimes</em><em> </em><em>smuggled </em><em>goods </em><em>into </em><em>colonies</em><em> </em><em>to </em><em>avoid</em><em> </em><em>paying</em><em> taxes</em><em>.</em><em> </em><em>.</em><em>.</em><em>.</em><em> </em><em>The </em><em>items </em><em>were </em><em>marked </em><em>with </em><em>a </em><em>stamp </em><em>to </em><em>show </em><em>the </em><em>tax </em><em>was </em><em>paid.</em>
Answer:
Results are below.
Explanation:
Giving the following information:
Selling price= $244
Unitary variable cost= 195 - 8= $187
Fixed costs= 327,600 + 37,000= $364,600
<u>We need to determine the new pre-tax income:</u>
Sales= 244*10,000= 2,440,000
Total variable cost= 187*10,000= (1,870,000)
Total contribution margin= 570,000
Fixed costs= (364,600)
Pre-tax income= 205,400
When all four elements of clarification, culture, compliance and connection are effectively addressed through a strategic onboarding system, the organization will be considered successful onboarding.
<h3>What is the successful onboarding?</h3>
A successful onboarding program is most expected to include clarification, compliance, culture, and connection and follow-ups, relying on the size and needs of any company. This is also called as the 4 C's of the onboarding.
Therefore, It all start out in the present moment, a new employee accepts the position.
Learn more about the successful onboarding, refer to:
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Answer:
Risk-free rate decreases
Explanation:
The CAPM formula for calculating cost of equity requires one to know the value of 3 pieces of information only:
1. the market rate of return,
2. the beta value
3. the risk-free rate.
Ra = Rrf + [Ba∗(Rm−Rrf)]
where:
Ra=Cost of Equity
Rrf = Risk-Free Rate
Ba = Beta
Rm=Market Rate of Return
From the formula
Ra = Rrf + [1.2∗(Rm−Rrf)]
Ra = Rrf + 1.2Rm - 1.2Rrf
From Ra = 1.2Rm -0.2Rrf
From the expression above, it can be seen that the lower the value of Rrf (Risk-Free rate), the higher the value of Ra.