Rental costs for office space have been going up at 4.8 % per year compounded annually for the past 5 years. If office space rent is now $ 25 per square foot per month, what were the rental rates 5 years ago?
Rental costs for office space have been going up at 4.8 % per year compounded annually for the past 5 years. If office space rent is now $ 25 per square foot per month, what were the rental rates 5 years ago?
Solution Summary: The author calculates the rental costs for an office space five years ago. The formula for interest rate i is represented by the formula.
Rental costs for office space have been going up at
4.8
%
per year compounded annually for the past
5
years. If office space rent is now
$
25
per square foot per month, what were the rental rates
5
years ago?
If you are using chatgpt leave it
I will downvote .
Temperature measurements are based on the transfer of heat between the sensor of a measuring device (such as an ordinary thermometer or the gasket of a thermocouple) and the medium whose temperature is to be measured. Once the sensor or thermometer is brought into contact with the medium, the sensor quickly receives (or loses, if warmer) heat and reaches thermal equilibrium with the medium. At that point the medium and the sensor are at the same temperature. The time required for thermal equilibrium to be established can vary from a fraction of a second to several minutes. Due to its small size and high conductivity it can be assumed that the sensor is at a uniform temperature at all times, and Newton's cooling law is applicable. Thermocouples are commonly used to measure the temperature of gas streams. The characteristics of the thermocouple junction and the gas stream are such that λ = hA/mc 0.02s-1. Initially, the thermocouple junction is at a temperature Ti and the gas stream at…
A body of mass m at the top of a 100 m high tower is thrown vertically upward with an initial velocity of 10 m/s. Assume that the air resistance FD acting on the body is proportional to the velocity V, so that FD=kV. Taking g = 9.75 m/s2 and k/m = 5 s, determine: a) what height the body will reach at the top of the tower, b) how long it will take the body to touch the ground, and c) the velocity of the body when it touches the ground.
Chapter 3 Solutions
Pearson eText for Finite Mathematics for Business, Economics, Life Sciences, and Social Sciences -- Instant Access (Pearson+)
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