Grade

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Type of questions

English Senior High

写真に書かれた英語の文法説明?を日本語で分かりやすく解説して欲しいです。お願いします……!

using participial adjectives USIIg real Iditionals to talk about present and future events%; Unit 2 oresent real conditional: To talk about a true or possible situation in the present, we use if + the imple present in the if clause, and the simple present in the result clause: Ifl have extra money at the end of the week, I get excited. The future real conditional: To talk about a true or possible situation in the future, we use if + the simple oresent in the if clause, and will + base form in the result clause: If you take this medicine, you will feel relaxed. We can also use time clauses to talk about the future. Notice that the structure is the same as the real Conditional: PRESENT: When I have extra money at the end of the week, I get excited. FUTURE: After you take this medicine, you will feel relaxed. Participial adjectives modify the nouns or pronouns they accompany. They are typically formed by adding -ing or -(e)d to a verb-also known as the present and past participle. (Remember, though, that the past participles of some verbs are irregular, such as freeze - frozen.) Generally, the "cause" of the feeling uses the -ing form: Her decision to quit was surprising. And the “receiver" of the feeling uses the -ed form: I was surprised by her decision to quit. ere are some other common participial adjectives: Base verb -ing -ed Base verb -ing -ed annoying annoyed frustrate frustrating frustrated annoy interest interesting interested bore boring bored satisfy satistying satisfied confuse confusing confused shock shocking shocked embarrass embarrassing embarrassed surprise surprising surprised excite exciting excited

Resolved Answers: 1
Chemistry Senior High

読みましたが、全体的に理解出来ません。英語で理解出来なかったので多分、全文和訳しても理解出来ません。 なので、この写真に載っていることを分かりやすく教えていただきたいです🙇🏻‍♀️

Free energy changes determine if a reaction is endothermic or exothermic. Processes in nature are driven in two directions: toward least MAIN IDEA enthalpy and toward greatest entropy. When these two oppose each other, the dominant factor determines th direction of change. As a way to predict which factor will dominate fora given system, a function has been defined to relate the enthalpy and entropy factors at a given temperature tropy and constant pressure. This combined enthalpy-entropy function is callepd t free energy, G, of the system; it is also called Gibbs free energy. This function simultaneously assesses the tendencies for enthalpy and entropy to change. Natural processes proceed in the direction that lowersthefree energy of a system. Only the change in free energy can be measured. It can be defined in terms of changes in enthalpy and entropy. At a constant pressure and temperature, the free-energy change, AG, of a system is defined as the difference between the change in enthalpy, AH, and the product of the Kelvin temperature and the entropy change, which is defined as TAS. Free Energy Change AGO= AH°- TASO Note that this expression is for substances in their standard states. The product TAS and the quantities AG and AHhave the same umor usually kJ. The units of AS for use in this equation are usually N If AG<0, the reaction is spontaneous. AH and AS in the free-energy equation can have positive or negative values. This leads to four possible combinations of terms.

Resolved Answers: 1